2009 Final Papers Received ---455
|
Paper |
# |
Presenter First |
Presenter Last |
Organization |
Paper Title |
|
10.0101 |
1752 |
Vahram |
Stepanyan |
MCT Inc., |
Transient Performance and Asymptotic Tracking with Filtering Robust Adaptive Control |
|
10.0201 |
1316 |
Johann |
Schumann |
RIACS/NASA |
Software V&V Support by Parametric Analysis of Large Software Simulation Systems |
|
10.0202 |
1265 |
Kenneth |
Kelley |
Safeware Engineering |
Automated Test Case Generation from Correct and Complete System Requirements Models |
|
10.0203 |
1275 |
William |
Stratton |
JHU/APL |
Developing an Approach for Analyzing and Verifying System Communication |
|
10.0204 |
1323 |
David |
Bushnell |
|
Verification and Validation of Air Traffic Systems: Tactical Separation Assurance |
|
10.0205 |
1232 |
Dmitry |
Luchinsky |
NASA Ames research Center |
Fault Diagnostics and Prognostics for Large Segmented SRMs |
|
10.0206 |
1225 |
Tolga |
Kurtoglu |
MCT - |
Systematic Benchmarking of Diagnostic Technologies for an Electrical Power System |
|
10.0301 |
1438 |
Howard |
Neely |
HRL Laboratories, LLC |
Performance Analysis of a Cognitive Analogical Reasoner |
|
10.0401 |
1470 |
Manny |
Uy |
|
Optimization by Design of Experiment Techniques |
|
10.0402 |
1026 |
Abou Bakr |
Elhady |
National Authority of Remote Sensing ans Space Science |
Micro-Satellite Structure Fracture Investigation Techniques |
|
10.0403 |
1107 |
Charles |
Norton |
Jet Propulsion Laboratory |
Extending OSSE Beyond Numerical Weather Prediction to New Areas in Earth Observing Science |
|
10.0404 |
1514 |
vahid |
farajpour |
UNIVERSITY |
A New Approach for Supersonic Diffuser Design |
|
10.0405 |
1169 |
Alireza |
Shakeri |
|
A Method for Turbojet Engine Performance Analysis |
|
10.0601 |
1301 |
Paul |
von Allmen |
JPL |
Molecular Excitation and Radiative Transfer Model for MIRO |
|
10.0602 |
1210 |
Alexandre |
Guillaume |
Jet Propulsion Laboratory |
Fine Alignment of the James Webb Space Telescope with a Genetic Algorithm |
|
10.0603 |
1273 |
Seungwon |
Lee |
Jet Propulsion Laboratory |
Quantification of Trace Chemicals using Vehicle Cabin Atmosphere Monitor |
|
10.0604 |
1227 |
gian franco |
sacco |
jpl |
Application of Genetic Algorithm for Flight System Verification and Validation |
|
10.0605 |
1605 |
Hook |
Hua |
Jet Propulsion Laboratory/California Institute of |
Web Services for Multiplatform Exploratory Analysis of Level 2 and 3 NEWS Merged A-Train Data |
|
10.0606 |
1524 |
Michael |
Mischna |
JPL/California Inst. of Technology |
Use of Evolutionary Computation for Isolating Surface Emissions from Orbit |
|
10.0701 |
1272 |
Joseph |
Joswig |
Jet Propulsion Laboratory |
Flexible Command and Control Interfaces for Teleoperations |
|
10.0702 |
1307 |
R. Jay |
Torres |
Jet Propulsion Laboratory |
RAPID: Collaboration Results from Three NASA Centers in Commanding/Monitoring Lunar Assets |
|
10.0703 |
1191 |
John |
Wright |
Jet Propulsion Lab |
Three-Dimensional Tools for Telemetry Visualization and Analysis |
|
10.0704 |
1324 |
Enric |
Pastor |
EPSC / UPC |
Red-Eye: A Helicopter-Based Architecture for Tactical Wildfire Monitoring Strategies |
|
10.0705 |
1308 |
Thomas |
Crockett |
Jet Propulsion Lab |
Spatial Planning for Robotics Operations |
|
10.0706 |
1299 |
Michael |
McCurdy |
|
Planning Tools for Mars Surface Operations: Human-Computer Interaction Lessons Learned |
|
10.0707 |
1044 |
Ryota |
Mori |
|
Analysis of Pilot Landing Control in Crosswind using Neural Networks |
|
10.0708 |
1338 |
Dan |
Fu |
Stottler Henke Associates |
Constructing Training Demonstrations |
|
10.0901 |
1526 |
Brian |
Delaney |
MIT |
Modeling and Detection Techniques for Counter-Terror Social Network Analysis and Intent Recognition |
|
10.1001 |
1465 |
Lonnie |
VanZandt |
Predictable Response Consulting |
Intentions and Issues of Model-Driven Development and an Introduction to the OMG MARTE™ Profile |
|
10.1101 |
1173 |
Jason |
Sherwin |
Georgia Institute of Technology |
Hierarchical Temporal Memory Algorithms for Understanding Asymmetric Warfare |
|
10.1201 |
1110 |
Alexander |
|
Jet Propulsion Laboratory |
A Reusable Architectural Pattern for Auto-Generated Payload Management Flight Software |
|
10.1202 |
1527 |
James |
Lumpp |
|
Design of Flight Software for the KySat CubeSat Bus |
|
10.1203 |
1038 |
Luciana |
Burgareli |
Aeronautics and Space Institute - IAE |
A Variation Mechanism Based on Adaptive Object Model for Software Product Line |
|
10.1301 |
1311 |
Eric |
Konieczny |
Booz Allen Hamilton |
Establishing Presence within the Service-Oriented Environment |
|
10.1302 |
1385 |
Elias |
Sayfi |
Jet Propulsion Laboratory |
Overcoming the Challenges of Implementing a Multi-Mission Distributed Workflow System |
|
10.1303 |
1289 |
Daniel |
Allard |
Jet Propulsion Laboratory/Caltech |
Development of a Relay Performance Web Tool for the Mars Network |
|
10.1304 |
1146 |
Naohiko |
Kohtake |
Japan Aerospace Exploration Agency |
Model-Based Independent Verification and Validation for Dependable Flight Software |
|
10.1501 |
1106 |
|
Holmes |
Java Professionals, Inc. |
Augmenting Agent Knowledge Bases with OWL Ontologies |
|
11.0101 |
1056 |
Kerry |
Westervelt |
NAVAIR |
Systems Engineering Approach to Integrated Diagnostics Requirements |
|
11.0102 |
1608 |
Carl |
Byington |
Impact Technologies, LLC |
Diagnostic Enhancements for Air Vehicle HUMS to Increase Prognostic System Effectiveness |
|
11.0103 |
1062 |
Kimberly |
Meredith |
The Boeing Company |
New MEMS Technologies for Integrated Vehicle Health Management and Fluid Sensing Applications |
|
11.0201 |
1747 |
Cintia |
Bizarria |
Embraer |
Health Monitoring using Support Vector Classification on an Auxiliary Power Unit |
|
11.0202 |
1662 |
Hamed |
Badihi |
|
Artificial Neural Network Application to Fuel Flow Function for Demanded Jet Engine Performance |
|
11.0203 |
1024 |
ASHISH |
BABBAR |
|
Advanced Diagnostics and Prognostics for Engine Health Monitoring |
|
11.0301 |
1293 |
Cintia |
Bizarria |
Embraer |
Prognostics and Health Monitoring for an Electro-Hydraulic Flight Control Actuator |
|
11.0302 |
1671 |
|
Brown |
Georgia Institute of Technology |
Particle Filter Based Anomaly Detection for Aircraft Actuator Systems |
|
11.0303 |
1591 |
Matthew |
Smith |
Imapct Technologies, LLC |
Experimental and Analytical Development of Health Management for Electro-Mechanical Actuators |
|
11.0304 |
1345 |
Kai |
Goebel |
|
A Diagnostic Approach for Electro-Mechanical Actuators in Aerospace Systems |
|
11.0305 |
1482 |
Xudong |
Wang |
Research Corporation of |
Fault Detection, Identification and Estimation in the EHA System using Multiple Model Estimation |
|
11.0306 |
1414 |
Asif |
Khalak |
Scientific Monitoring, Inc. |
Exploratory Study of Electromechanical Actuator Jamming and Strategies for Dejamming |
|
11.0401 |
1657 |
Yevgeny |
Macheret |
IDA |
Effect of Accuracy of the Initial Defect Distribution on Successful Prognosis of Aircraft Structures |
|
11.0402 |
1187 |
Curt |
Rideout |
OKOS Solutions |
Advanced Deep Focus Acoustic Microscope for Nondestructive Inspection of Metals and Composite Materials |
|
11.0403 |
1283 |
Amir |
Fijany |
Italian Institute of Technology |
A New Efficient Method for System Structural Analysis and Generating Analytical Redundancy Relations |
|
11.0501 |
1387 |
Kai |
Goebel |
|
Evaluating Algorithm Performance Metrics Tailored for Prognostics |
|
11.0502 |
1092 |
Martin |
Karchnak |
Epoch Engineering, Inc. |
Robust Ground-Based Diagnostics, Prognostics and Health Management Information |
|
11.0503 |
1263 |
Liang |
Tang |
Impact Technologies, LLC. |
Methodologies for Uncertainty Management in Prognostics |
|
11.0504 |
1715 |
Sachin |
Kumar |
Prognostic Health Management Lab |
A Residual Estimation Based Approach for Isolating Faulty Parameters |
|
11.0505 |
1027 |
Jerome |
LACAILLE |
Snecma |
Standardized Failure Signature for a Turbofan Engine |
|
11.0506 |
1515 |
Chiman |
Kwan |
Signal Processing Inc. |
Mechanical Fault Diagnosis using Wireless Sensor Networks and a Two-Stage Neural Network Classifier |
|
11.0507 |
1700 |
Zhanshan (Sam) |
Ma |
|
A New Approach to PHM |
|
11.0701 |
1279 |
Bruno |
Leão |
Embraer |
Aircraft Flap and Slat Systems Health Monitoring using Statistical Process Control Techniques |
|
11.0702 |
1401 |
Bo |
Ling |
Migma Systems, Inc. |
Online Coated Ball Bearing Health Monitoring using Degree of Randomness and Hidden Markov Model |
|
11.0703 |
1670 |
Brown |
|
Georgia Institute of Technology |
An Energy Flow Approach to Fault Propagation Analysis |
|
11.0801 |
1337 |
Kai |
Goebel |
|
Towards Prognostics for Electronics Components |
|
11.0802 |
1508 |
Denis K. |
Koltsov |
|
Health Monitoring of Aircraft Wiring By Acoustic Method |
|
11.0803 |
1631 |
Antonio |
Ginart |
Impact Technologies |
Time Delay as a Diagnostic Technique for Power Drives |
|
11.0804 |
1728 |
Christopher |
|
Ridgetop Group Inc. |
Damage Propagation Analysis Methodology for Electromechanical Actuator Prognostics |
|
11.0805 |
1028 |
John |
Morrison |
|
Fast Summation Transformation for
|
|
11.0806 |
1250 |
Abe |
Zeid |
Northeastern University |
Review of Invasive and Non-Invasive Vibration Monitoring of Hard Disk Drives |
|
11.0807 |
1489 |
Chiman |
Kwan |
SPI |
Real-Time System Condition Monitoring using Wireless Sensors |
|
11.0901 |
1264 |
Richard |
Millar |
Naval |
Defining Requirements for Advanced PHM Technologies for Optimal Reliability Centered Maintenance |
|
11.0902 |
1736 |
Eric |
Rabeno |
AMSAA |
Condition Based Maintenance of Military Ground Vehicles |
|
11.0903 |
1366 |
Markus |
Klein |
|
Integration of RCM and PHM for the Next Generation of Aircraft |
|
11.1001 |
1570 |
John |
Sheppard |
|
Demonstrating Semantic Interoperability of Diagnostic Models via AI-ESTATE |
|
11.1002 |
1716 |
Jie |
Gu |
CALCE, |
Prognostics-Based Product Qualification |
|
11.1003 |
1398 |
Kevin |
Swearingen |
Boeing |
Integrating Health Management into Legacy Platforms |
|
11.1004 |
1390 |
Greg |
|
Boeing Phantom Works |
Developing Health Management for Current and Future Inventory Aircraft |
|
11.1101 |
1142 |
Yongping |
Ma |
|
|
|
11.1102 |
1115 |
Amitabh |
Barua |
ECE Department, |
Hierarchical Fault Diagnosis and Health Monitoring in Multi-platform Space Systems |
|
11.1103 |
1408 |
Mark |
Schwabacher |
|
Using Decision Trees to Detect and Isolate Simulated Leaks in the J-2X Rocket Engine |
|
12.0201 |
1143 |
Guanghong |
Wang |
|
Integrative Flight Control
Validation Architecture for Manned Space |
|
12.0301 |
1511 |
Michael |
Baxter |
The Aerospace Corporation |
Scenario Results of a Global Trends Model for Use with aerospace Systems Combat Simulations(( |
|
12.0401 |
1131 |
Manfred |
Bester |
Bester Tracking Systems, Inc. |
Automated Multi-Mission
Scheduling and |
|
12.0402 |
1477 |
Alex |
Cervantes |
Jet Propulsion Laboratory |
Exploring the Use of a Test Automation Framework |
|
12.0403 |
1281 |
Donald |
Gibbs |
Caltech/JPL |
Testing Flight Systems with Machine Executable Scripts |
|
12.0404 |
1565 |
Michael |
Seibert |
Jet Propulsion Laboratory |
Operations Strategies for the Mars Exploration Rovers during the 2007 Martian Global Dust Storm , |
|
12.0501 |
1599 |
Scott |
Lever |
Jet Propulsion Laboratory |
Strategic Analysis for the |
|
12.0502 |
1618 |
Scott |
Lever |
Jet Propulsion Laboratory |
On Low Power Operations during Spirit’s Third Winter on Mars |
|
12.0503 |
1590 |
Brian |
Paczkowski |
Jet Propulsion Laboratory |
Managing Complexity to Maximize Science Return: Science Planning Lessons Learned from Cassini |
|
12.0504 |
1521 |
padma |
|
JPL |
MISR: Takes a Licking, Keeps on Ticking | |
|
12.0505 |
1611 |
Brett |
Smith |
Jet Propulsion Laboratory |
Managing Momentum on the Dawn Low
Thrust |
|
12.0506 |
1155 |
Emilio |
De Pasquale |
ESA |
ATV Jules Verne Reentry
Observation: |
|
12.0507 |
1376 |
Richard |
Rieber |
JPL |
The Contingency of Success: Operations for Deep Impact’s Planet Hunt |
|
12.0508 |
1550 |
David |
Scott |
NASA MSFC - |
Growing a Training System and Culture for the Ares I Upper Stage Project |
|
12.0601 |
1239 |
Rob |
Landis |
|
Between the Moon and Mars: Piloted and Surface Operations at a NEO |
|
12.0602 |
1098 |
Leslie |
Wickman |
Azusa Pacific University/Center for Research in Science |
Activity-Based Habitable Volume Estimating for Human Spaceflight Vehicles |
|
12.0701 |
1256 |
Brent |
Nash |
Jet Propulsion Laboratory |
Using XML Configuration-Driven Development to Create a Customizable Ground Data System |
|
12.0702 |
1505 |
Javier |
|
SGT Inc at NASA |
Peer-to-Peer Planning for Space |
|
12.0801 |
1286 |
Damon |
Stambolian |
NASA/KSC/CxP Ground Operations Project |
1-G Human Factors for Optimal Processing and Operability of Constellation Ground Systems |
|
13.0101 |
1088 |
Jeffery |
Webster |
Jet Propulsion Laboratory |
Let’s Roll| Rolling Out the NASA Systems Engineering Framework |
|
13.0102 |
1198 |
Mary Ellen |
Derro |
Jet Propulsion Laboratory |
Behavioral Competencies of Highly Regarded Systems Engineers at NASA |
|
13.0103 |
1009 |
Jeremiah |
Finnigan |
|
What Project Leaders Need to Know about Model Driven Development: A Paradigm Shift in Software |
|
13.0104 |
1183 |
Peter |
Putz |
RIACS/USRA |
Development and Deployment of NASA`s Budget Execution Dashboard |
|
13.0105 |
1043 |
Rajiv |
Kohli |
Aerospace Corporation |
Achieving a Prioritized Research & Technology Development Portfolio for the Dust Management Project |
|
13.0106 |
1623 |
Mbuyi |
Khuzadi |
The Boeing Company |
The Collaboration Management Culture |
|
13.0107 |
1353 |
Jill |
Hardash |
Booz Allen Hamilton |
GPS III Independent Program
Assessment Lessons Learned: From IPA Failure to |
|
13.0108 |
1291 |
Laura |
Black |
|
Assessing Executability in Large Complex Programs |
|
13.0109 |
1328 |
Marek |
Tuszynski |
Jet Propulsion Laboratory |
Space Interferometry
|
|
13.0110 |
1230 |
Hossein |
Zadeh |
Royal Melbourne Institute of
Technology ( |
NaMOS: Scheduling Patrol Boats and Crews for the Royal Australian Navy |
|
13.0111 |
1531 |
Randall |
|
Jet Propulsion Laboratory |
Reducing NPR 7120.5D to Practice: Preparing for a Life-cycle Review |
|
13.0112 |
1003 |
Irfan |
Manarvi |
|
Joint Collaboration Models for Small Satellite Design and Development between Client and OEM |
|
13.0113 |
1252 |
David |
Maluf |
NASA |
NASA Web-Accessible Open Software as a Service Framework |
|
13.0201 |
1081 |
Ryan |
Odegard |
Draper Laboratory |
Concept Development of a
Multi-Vehicle System for an Operationally Responsive |
|
13.0202 |
1689 |
Colleen |
Marrese-Reading |
Jet Propulsion Laboratory |
Venus |
|
13.0203 |
1290 |
Meemong |
Lee |
Jet Propulsion Laboratory |
MSVN-Juno |
|
13.0204 |
1083 |
Vonda |
Miller |
The Boeing Company |
Lunar Lander |
|
13.0301 |
1080 |
Nicholas |
Borer |
Draper Laboratory |
A Unified Framework for Capturing Concept Development Methods |
|
13.0302 |
1111 |
Young |
Lee |
Jet Propulsion Labortory |
Constellation Program’s Stretch Goal Requirements |
|
13.0401 |
1036 |
Mariagrazia |
Spada |
|
Limited Liability and Risk Sharing for a Liberalized Space Market |
|
13.0402 |
1632 |
Yuri |
Gawdiak |
NASA |
Joint Planning & Development Office Strategic Decision and Policy Model |
|
13.0501 |
1732 |
Richard |
Terrile |
Jet Propulsion Lab |
Evolutionary Computation for the Identification of Emergent Behavior in Autonomous Systems |
|
13.0502 |
1445 |
Mark |
Powell |
Attwater Consulting |
Improved Verification for Aerospace Systems |
|
13.0601 |
1504 |
Debra |
Emmons |
The Aerospace Corporation |
Quantitative Approach to Independent Schedule Estimates of NASA Science Missions |
|
13.0602 |
1616 |
Anh |
Tu |
The Aerospace Corporation |
Cost-Effective Allocation of NASA`s Rocket Propulsion Test Assets |
|
13.0603 |
1266 |
Gregory |
Dubos |
Georgia Institute of Technology |
Cost and Schedule Growth of Unmanned Spacecraft: Lessons Learned from NASA`s CADRe Database |
|
2.0101 |
1152 |
Kris |
Zacny |
Honeybee Robotics |
Percussive Digging Systems for Robotic Exploration and Excavation of Planetary and Lunar Regolith |
|
2.0102 |
1727 |
William |
Whittaker |
Astrobotic Inc., |
Configuring Innovative Regolith Moving Techniques for Lunar Outposts |
|
2.0103 |
1643 |
Paul |
Backes |
Jet Propulsion Laboratory |
Rover Reconfiguration for Body-Mounted Coring with Slip |
|
2.0104 |
1695 |
Robert |
Bonitz |
Jet Propulsion Laboratory |
The |
|
2.0105 |
1676 |
Paul |
Backes |
Jet Propulsion Laboratory |
Planetary Sample Sealing for Caching |
|
2.0106 |
1702 |
Pablo |
Abad-Manterola |
California Institute of Technology |
Wheel Design and Tension Analysis for the Tethered Axel Rover on Extreme Terrain |
|
2.0107 |
1650 |
Mihail |
Pivtoraiko |
Jet Propulsion Laboratory |
Autonomous Robot Navigation using Advanced Motion Primitives |
|
2.0108 |
1684 |
Debra |
Schreckenghost |
TRACLabs |
Real-Time Assessment of Robot Performance during Remote Exploration Operations |
|
2.0109 |
1340 |
John |
Enright |
|
Sun Sensing for Planetary Rover Navigation |
|
2.0110 |
1648 |
Paulo |
Younse |
Jet Propulsion Laboratory |
Sample Acquisition and Caching using Detachable Scoops for Mars Sample Return |
|
2.0201 |
1354 |
Lyle |
Jenkins |
Jenkins Enterprises |
Issues in Development of Space-Based Solar Power |
|
2.0202 |
1681 |
William |
Deininger |
Ball Aerospace |
Ball Aerospace’s Deep Space Mission Architecture and Capabilities |
|
2.0203 |
1065 |
Grace |
Tan-Wang |
Jet Propulsion Lab |
Return to Europa:
Overview of the Jupiter Europa Orbiter |
|
2.0204 |
1430 |
Kim |
Reh |
JPL |
Titan Saturn System |
|
2.0205 |
1644 |
Thomas |
Spilker |
Jet Propulsion Laboratory |
Analysis of Architectures for the Scientific Exploration of Enceladus |
|
2.0206 |
1361 |
Chow Jeng |
Wong |
Universiti Sains |
Temporal and Spatial Air Quality Monitoring using Internet Surveillance Camera and ALOS Satellite Image |
|
2.0301 |
1440 |
Peter |
Tsou |
JPL |
STARDUST: The Making of a Comet Coma Flyby Sample Return |
|
2.0302 |
1680 |
Christopher |
Cottingham |
Ball Aerospace & Technologies Corp. |
Asteroid Surface Probes: A Low-Cost Approach for the In Situ Exploration of Small Solar System Objects |
|
2.0303 |
1159 |
Melissa |
Jones |
Jet Propulsion Laboratory |
Next Generation Autonomous Lunar Geophysical Experiment Package |
|
2.0304 |
1537 |
Mark |
|
Jet Propulsion Laboratory |
In Situ Sampling using Meta-Stable Helium |
|
2.0305 |
1634 |
Andrew |
Klesh |
|
SHOTPUT: a JPL Planetary |
|
2.0306 |
1654 |
Anke |
Haugg |
Compliance Advice and Services in Microbiology GmbH |
Dry Heat Microbial Reduction at Various Humidity Conditions |
|
2.0307 |
1013 |
Jeffrey |
Smith |
Jet Propulsion Laboratory |
Mobility Productivity Impacts on Selection of Lunar Exploration Architectures |
|
2.0401 |
1587 |
Michael |
McGrath |
LASP -- |
The Aeronomy
of Ice in the Mesosphere |
|
2.0402 |
1582 |
Richard |
Grammier |
JPL |
A Look inside the Juno |
|
2.0403 |
1626 |
Tom |
Hoffman |
Jet Propulsion Laboratory |
GRAIL: Gravity Mapping the Moon |
|
2.0404 |
1649 |
Jack |
Leibee |
NASA/GSFC |
The Fermi Gamma-Ray Space Telescope: Overview and Early Science Results |
|
2.0405 |
1630 |
Barry |
Goldstein |
Jet Propulsion Laboratory |
|
|
2.0501 |
1055 |
|
Townsend |
|
Solar Particle Event Dose Prediction using Kernel Regression |
|
2.0502 |
1276 |
Christopher |
Stapels |
Radiation Monitoring Devices |
Tissue-Equivalent Solar Particle Dosimeter using CMOS SSPMs |
|
2.0503 |
1392 |
Witold |
Kowbel |
MER |
Boron-Based Fiber Composites for MISSE 6 Experiment |
|
2.0601 |
1218 |
Danwei |
Wang |
Nanyang Technological University |
Satellite Formation Keeping via Real-Time Optimal Control and Iterative Learning Control |
|
2.0602 |
1119 |
Tao |
Yang |
|
Application of Pursuit Algorithms for Space Missions |
|
2.0603 |
1532 |
Marco |
Sabatini |
Universita` Roma La Sapienza |
Navigation Issues in Different Baseline Formation Flying Missions |
|
2.0604 |
1145 |
Danwei |
Wang |
Nanyang Technological University |
Periodic and Quasi-Periodic Satellite Relative Orbits at Critical Inclination |
|
2.0605 |
1153 |
Danwei |
Wang |
Nanyang Technological University |
In-Plane Satellite Formations in Eccentric Orbits under J2 Perturbation |
|
2.0701 |
1462 |
Tommaso |
Rossi |
|
FLORAD |
|
2.0702 |
1463 |
Tommaso |
Rossi |
|
Experimental Italian Q/V Band Satellite Network |
|
2.0703 |
1411 |
Marco |
Lucente |
|
An Innovative Multimode Millimeter Wave Radar for Moon Remote Sensing |
|
2.0704 |
1412 |
Marco |
Lucente |
|
TRANSPONDERS: Research and Analysis for the Development of Telecommunication Payloads in Q/v Bands |
|
2.0801 |
1261 |
Giorgio |
Franceschetti |
Dipartimento di Ingegneria Elettronica e delle Telecomunicazioni, Università degli studi di Napoli F |
Comparison and Integration of GPS and DInSAR Deformation Time-Series |
|
2.0802 |
1400 |
Chen-Joe |
Fong |
National Space Organization (NSPO) |
In Quest of Global Radio
Occultation |
|
2.0803 |
1362 |
Chow Jeng |
Wong |
Universiti Sains |
Determination of Aerosol Concentration using an Internet Protocol Camera |
|
2.0901 |
1349 |
Anita |
Sengupta |
Jet Propulsion Laboratory |
Mars Lander Engine Plume Impingement Environment of the Mars Science Laboratory |
|
2.0902 |
1219 |
Christopher |
Marsh |
U.S. Navy/Georgia Institute of Technology |
Fully-Propulsive Mars Atmospheric Transit Strategies for High-Mass Payload Missions |
|
2.0903 |
1384 |
Ian |
|
Georgia Institute of Technology |
Computational Analysis of a Tension Cone Supersonic Inflatable Aerodynamic Decelerator |
|
2.0904 |
1448 |
Colleen |
Marrese-Reading |
Jet Propulsion Laboratory |
Retro Rocket Plume Actuated Heat Shield Exhaust Ports |
|
2.0905 |
1449 |
Colleen |
Marrese-Reading |
Jet Propulsion Laboratory |
Orion Spacecraft Nominal and Contingency Earth Landing Retro Rocket System Options |
|
2.0906 |
1710 |
Hamed Hossein |
Afshari |
Aerospace Department, |
Nonlinear Optimal Trajectory Design for Lunar Landing Mission using Perturbation Control Theorem |
|
2.1001 |
1302 |
Joseph |
Peden |
SAIC |
The Development of Small-Payload Rideshare Capabilities: A 2000–2008 Summary |
|
2.1002 |
1061 |
Eleni |
Sims |
The Aerospace Corporation |
The Department of Defense Space Test Program: Come Fly with Us |
|
2.1003 |
1099 |
Millan |
Diaz-Aguado |
ASRC |
Small Class-D Spacecraft Thermal Design, Test and Analysis: Pharmasat Biological Experiment |
|
2.1004 |
1035 |
Mariagrazia |
Spada |
|
Commercial Spaceports to Serve Transports and Human Flights: Concept Operations |
|
2.1101 |
1149 |
Tye |
Brady |
C.S. Draper Laboratory |
Apollo Looking Forward: Crew Task Challenges |
|
2.1102 |
1087 |
Tye |
Brady |
Draper Laboratory |
Hazard Detection Methods for Lunar Landing |
|
2.1103 |
1195 |
Babak |
Cohanim |
Draper Laboratory |
Approach Phase ÄV Considerations for Lunar Landing |
|
2.1104 |
1180 |
Kevin |
Duda |
Draper Laboratory |
Design and Analysis of Lunar Lander Manual Control Modes |
|
2.1201 |
1096 |
Richard |
Balthazor |
US |
Distributed Space-Based Ionospheric Multiple Plasma Sensor Networks |
|
2.1202 |
1542 |
Semion |
Kizhner |
|
New Methodology for Reducing Sensor and Readout Electronics Circuitry Noise in Digital Domain |
|
2.1203 |
1122 |
Wei |
Li |
The |
Energy Efficiency Enhancement in Satellite Based WSN through Collaboration and Self-Organized Mobility |
|
2.1301 |
1015 |
Lembit |
Sihver |
|
Simulations of the MTR-R and MTR Experiments at ISS, and Shielding Properties using PHITS |
|
2.1302 |
1315 |
|
|
|
Improvements to Neutron Data Relevant to GCR Transport |
|
2.1303 |
1255 |
Christina |
Hammock |
JHU Applied Physics Lab |
Europa Radiation Environment and Monitoring |
|
3.0101 |
1507 |
Harmen |
Schippers |
National Aerospace Laboratory NLR |
Broadband Optical Beam Forming for Airborne Phased Array Antenna |
|
3.0102 |
1042 |
Janice |
Rock |
|
A MEMS-Based, Ka-Band, 16-Element Sub-Array |
|
3.0103 |
1020 |
Joel |
Booth |
U.S. Army Redstone asrenal |
Weather and Propagation Effects on Multi-Mode Seeker Systems |
|
3.0201 |
1573 |
|
Jones |
Jet Propulsion Laboratory |
Pros and Cons of using Arrays of Small Antennas versus Large Single Dish Antennas for Deep Space Network |
|
3.0202 |
1557 |
Walid |
Majid |
Jet Propulsion Laboratory |
Accurate Spacecraft Angular Position from DSN VLBI Phases using X-Band Telemetry or DOR Tones |
|
3.0203 |
1178 |
Kelleher |
Guerin |
|
Stabilizing an S-Band Antenna for
|
|
3.0204 |
1738 |
David |
Rochblatt |
Jet Propulsion Laboratory |
A New Blind Pointing Model Improves Large Reflector Antennas Precision Pointing at Ka-Band (32-GHz) |
|
3.0501 |
1133 |
Nakul |
Haridas |
The |
Multiband Micro Antenna on Silicon Substrate |
|
3.0502 |
1469 |
Harmen |
Schippers |
National Aerospace Laboratory NLR |
Development of Dual-Frequency Airborne Satcom Antenna with Optical Beamforming |
|
4.0101 |
1561 |
Victor |
Vilnrotter |
Jet Propulsion Laboratory |
Uplink Array Concept Demonstration with the EPOXI Spacecraft |
|
4.0102 |
1562 |
Victor |
Vilnrotter |
Jet Propulsion Laboratory |
Pointing-Vector and Velocity Based Frequency Predicts for Deep-Space Uplink Array Applications |
|
4.0103 |
1584 |
Shervin |
Shambayati |
Jet Propulsion Laboratory |
Low Cost Deep Space Hybrid Optical/RF Communications Architecture |
|
4.0104 |
1659 |
Scott |
Bryant |
Caltech, Jet Propulsion Laboratory |
Lunar Pole Illumination and Communications Maps Computed from GSSR Elevation Data |
|
4.0105 |
1082 |
Chuck |
Dusold |
The Boeing Company |
Lunar Relay Satellite Capabilities via Re-Use of Delivery Vehicle Modules |
|
4.0106 |
1054 |
Robert |
Cesarone |
Jet Propulsion Laboratory |
Mission Set Analysis Tool for Assessing Future Demands on NASA`s Deep Space Network |
|
4.0107 |
1687 |
Darren |
McKague |
|
IMAGINE |
|
4.0108 |
1108 |
Abhijit |
Biswas |
Jet Propulsion Laboratory |
Acquisition and Pointing for a Mars Optical Access Link |
|
4.0201 |
1564 |
Michael |
Pajevski |
NASA/JPL |
Use of IPsec by Manned Space Missions |
|
4.0202 |
1228 |
Julie Ann |
Connary |
Cisco Systems, Inc. |
Internet Routing in Space: Architectures for Quality of Service |
|
4.0203 |
1231 |
Joe |
Johnson |
Cisco Systems, Inc. |
Internet Routing in Space NMS Architecture |
|
4.0204 |
1262 |
Christopher |
Olson |
cisco Systems, Inc. |
When PIGs Fly-Addressing Software Reliability Concerns for the IRIS IP Router Operating System |
|
4.0205 |
1023 |
Lloyd |
Wood |
Cisco Systems |
A Bundle of Problems |
|
4.0206 |
1534 |
|
Torgerson |
Jet Propulsion Lab |
The |
|
4.0301 |
1600 |
Hant |
James |
The Aerospace Corporation |
Calculating Network Availability |
|
4.0302 |
1522 |
Steven |
Berson |
The Aerospace Corporation |
Effect of Mobility on Future Satellite Packet Networks Routing Protocols |
|
4.0401 |
1397 |
Andrew |
Royle |
Integrity Applications Incorporated |
GOES Direct Broadcast Service History and Future |
|
4.0402 |
1668 |
PRIYANKA |
GARG |
R.C.C.V. GIRLS (P.G.)
COLLEGE,C-22, |
Reducing RF Blackout during Re-Entry of the Reusable Launch Vehicle |
|
4.0601 |
1319 |
Shervin |
Shambayati |
Jet Propulsion Laboratory |
Deep-Space Ka-band Link Priority Data Protection: Preemptive Retransmission vs. Margin |
|
4.0602 |
1101 |
Walid |
Majid |
JPL/Caltech |
Compact Radio Source Density and Precision Spacecraft Tracking |
|
4.0603 |
1034 |
David |
Oberhettinger |
NASA/Caltech Jet Propulsion Laboratory |
Addressing Common Constraints to Science Data Downlink |
|
4.0701 |
1635 |
Chen |
Jing |
ISCAS |
Hop-by-Hop Transport for Satellite Networks |
|
4.0702 |
1130 |
Yasuto |
Sumiya |
ENRI |
Mitigation of Log-On Rush Phenomenon in Aeronautical Satellite Data Communication |
|
4.0703 |
1045 |
Keith |
Chetcuti |
|
802.11a Channel Parameters Characterization on board a Business Jet |
|
4.0704 |
1158 |
Richard |
Orr |
SATEL LLC |
Multiple Access Interference Properties of Constant-Envelope CDMA |
|
4.0705 |
1157 |
Richard |
Orr |
SATEL LLC |
Code Phase and Delay Settings That Minimize CDMA Interference |
|
4.0706 |
1249 |
Mahendiran |
Prathaban |
Telecom et Management Sudparis |
An Antenna Selection Algorithm for Mars Exploration Rover to Increase Data Return with Minimum Delay |
|
4.0801 |
1006 |
Gregory |
Mayhew |
|
Convolutional Codes using Nonlinear Generators for Rate One-Fourth and Memory Order Four |
|
4.0802 |
1007 |
Gregory |
Mayhew |
|
Multi-Rate Convolutional Codes using Common Nonlinear Generators for Memory Order Four |
|
4.0803 |
1072 |
Kendra |
Cook |
Integrity Applications Incorporated |
Current Wideband MILSATCOM Infrastructure and the Future of Bandwidth Availability |
|
4.0804 |
1407 |
Dave |
Taggart |
Aerospace Corporation |
Nonlinear Amplifier Noise Product Ratio Modeling And Simulation |
|
4.0805 |
1156 |
Richard |
Orr |
SATEL LLC |
CDMA Is Unfair: Transmit Margin in an Inhomogeneous User Community |
|
4.0806 |
1737 |
Christopher |
|
The Aerospace Corporation |
CubeSat Communications Transceiver for Increased Data Throughput |
|
4.0901 |
1037 |
Gregory |
Mayhew |
|
Cumulative Distribution Function for Order 7 de Bruijn Weight Classes |
|
4.0902 |
1433 |
Raghavendra |
Prabhu |
The Aerospace Corporation |
Active Constellation Modification Techniques for OFDM PAR Reduction |
|
4.0903 |
1472 |
Rajendra |
Kumar |
The Aerospace Corporation |
Detailed Analysis of the Impact of the Distortion Due to Nonlinear Amplifiers on BER Performance |
|
4.0904 |
1506 |
Raghavendra |
Prabhu |
The Aerospace Corporation |
Evaluating MIMO Systems with Multi-Polarized Antennas |
|
4.0905 |
1235 |
Wan-Hsin |
Hsieh |
|
An Approach Attaining Adjustable Designated Footprint |
|
4.0906 |
1443 |
Bharathi |
Devi |
LGS Integrated Solutions |
Aggregated Equivalency for On-Off Models |
|
4.0907 |
1624 |
Jorge |
Fuentes |
CSULB |
Speech Recognition using Frequency Transformations |
|
4.0908 |
1033 |
Ronald |
Bloom |
The Aerospace Corporation |
Band-Limited 2-D Interpolation using NUFFT |
|
4.1001 |
1709 |
|
Andrade |
University of the |
A Novel Approach to Integrated GPS/INS Tracking |
|
4.1002 |
1740 |
Joseph |
Skobla |
University of the |
Monitoring GPS Ephemeris Data in |
|
4.1003 |
1229 |
Slobodan |
Nedic |
Nedics Associates |
On GPS Signal Multipath Modeling in Dynamic Environments |
|
4.1004 |
1613 |
Srinivasa |
Raghavan |
The Aerospace Corp. |
The Mean Cycle Slip Time for First-, Second-, and Third-Order PLLs |
|
4.1005 |
1220 |
Yoshinori |
Kondoh |
JAXA |
Development of a New Generation Spaceborne GPS Receiver |
|
4.1101 |
1192 |
Eric |
McDonald |
The Aerospace Corporation |
Hardware Accelerated Multichannel Receiver |
|
4.1102 |
1739 |
Valles |
Esteban |
The Aerospace Corporation |
An EMWIN and LRIT Software Receiver using GNU Radio |
|
4.1103 |
1402 |
Joseph |
Kim |
The Aerospace Corporation |
Cross-layer Mitigation Techniques for Channel Impairments |
|
4.1104 |
1346 |
Gennady |
Poberezhskiy |
Raytheon Space and Airborne Systems |
Channel Mismatch Compensation in Multichanne Sampling Circuits with Weighted Integrationl |
|
4.1105 |
1431 |
Elettra |
Venosa |
Seconda Università di Napoli |
QAM Receiver with Band-Pass Sampling and Blind Synchronization |
|
4.1106 |
1132 |
Yefim |
Poberezhskiy |
SAIC |
Some Aspects of the Design of Software Defined Receivers Based on Sampling with Internal Filtering |
|
4.1107 |
1073 |
Yefim |
Poberezhskiy |
SAIC |
A New Approach to Increasing Sensitivity and Resolution of A/Ds |
|
4.1201 |
1493 |
Robert |
Kerczewski |
|
Progress on the Development of |
|
4.1202 |
1095 |
Robert |
Kerczewski |
|
Estimation of VDL Mode 2 with Hidden Transmitters |
|
4.1203 |
1248 |
Robert |
Stamm |
Raytheon |
Network-Centric Operations Spiral 1: Enhanced Interagency Collaboration |
|
4.1204 |
1730 |
Erton |
Boci |
ITT Advanced Engineering and Sciences |
RF Coverage Analysis Methodology as Applied to ADS-B Design |
|
4.1205 |
1706 |
Zhanshan (Sam) |
Ma |
|
Cognitive Ecology and Social Learning Inspired Machine Learning |
|
4.1206 |
1019 |
Atiye |
Alaeddini |
|
Conflict Resolution Maneuvers Based on Genetic Algorithm Modified Webs |
|
5.0101 |
1574 |
Ryan |
McClelland |
SGT |
Design Concept for the International X-Ray Observatory Flight Mirror Assembly |
|
5.0201 |
1211 |
Kristen |
Sutherland |
Jet Propulsion Laboratory |
A Refined Approach to Glass Strength Forecasting |
|
5.0202 |
1079 |
Bruno |
Jau |
Jet Propulsion Laboratory |
The Space Interferometer Siderostats |
|
5.0203 |
1215 |
Daniel R. |
DiBiase |
|
Mars Hand Lens Imager: Lens Mechanical Design |
|
5.0204 |
1185 |
Charles |
Fisher |
Jet Propulsion Laboratory |
Cobra: A Two-Degree of Freedom Fiber Optic Positioning Mechanism |
|
5.0205 |
1380 |
Brian |
|
CFE Services |
Herschel Space Telescope: Optical Test and Model Correlation |
|
5.0206 |
1209 |
Michael |
Thelen |
Jet Propulsion Laboratory |
The Mechanical Design of a Kinematic Mount for the Mid Infrared Instrument Focal Plane Module on the James Webb Space Telescope |
|
5.0301 |
1682 |
Nikos |
Karafolas |
European Space Agency |
Introducing Photonics in Spacecraft Engineering: ESA’s Strategic Approach |
|
5.0302 |
1619 |
Chuck |
Tabbert |
Ultra Communications Inc |
Radiation Hardening of Advanced Fiber Optic Systems for Space Missile and Avionic Applications |
|
5.0401 |
1365 |
Chow Jeng |
Wong |
Universiti Sains |
Aerosol Optical |
|
5.0402 |
1367 |
Chow Jeng |
Wong |
Universiti Sains |
Water Quality and Sea Surface Temperature Mapping using NOAA AVHRR Data |
|
5.0403 |
1372 |
Chow Jeng |
Wong |
Universiti Sains |
The Effect of Wind Speed on SST Retrieval |
|
5.0501 |
1583 |
William |
Johnson |
Jet Propulsion Laboratory |
Thermal Infrared Spectral Imager for Airborne Science Applications |
|
5.0502 |
1049 |
Spencer |
Bowen |
Air Force Institute of Technology (AFIT) |
Imaging Fourier Transform Spectrometry of Jet Engine Exhaust with the Telops FIRST-MWE |
|
5.0601 |
1150 |
Grant |
Soehnel |
Sandia National Labs |
Characterization Algorithm for Segmented MEMS Mirrors |
|
5.0602 |
1568 |
|
Monz |
AFIT |
A Maximum Likelihood Estimator for Tracking Purposes with Extended Sources |
|
5.0603 |
1051 |
Wen-Qin |
Wang |
University of Electronic Science and Technology of |
Multiple-Input and Multiple-Output SAR Diversified Waveform Design |
|
5.0701 |
1415 |
David |
Stoker |
SRI International |
LIDAR versus Satellite-Measured Optical Thickness of a Wildfire Aerosol |
|
5.0702 |
1683 |
WILLIAM |
HEAPS |
NASA GODDARD |
Precision Column CO2 Measurement from Space using Broad Band LIDAR |
|
5.0801 |
1016 |
Maarten |
Uijt de Haag |
|
Aircraft Heading for Dead Reckoning Applications using Airborne Laser Scanner Range Measurements |
|
5.0802 |
1546 |
Steven |
|
Air Force Institute of Technology |
Range Estimation Algorithms Comparison in Simulated 3-D Flash LADAR Data |
|
5.0803 |
1172 |
Jason |
McMahon |
US Air Force/ AFIT/ENG |
Improving 3-D |
|
5.0804 |
1556 |
Brian |
|
Air Force Institute of Technology |
A Comparison of Phase Retrieval Algorithms with a Remote Sensing Scenario |
|
5.0805 |
1549 |
Stephen |
Cain |
Air Force Institute of Technology |
Bayesian-Based Fusion of 2-D and 3-D LADAR Imagery |
|
5.0806 |
1350 |
Adam |
MacDonald |
|
Advances in Tactical Laser Radar |
|
5.0901 |
1581 |
Anthony |
O`Dell |
AFIT/USAF |
Investigating the Effects of Atmospheric Seeing on the Detection of near Earth Orbiting Asteroids |
|
5.0902 |
1553 |
Russ |
Kauffman |
Lockheed Martin Enterprise Integration Group |
Dynamic Wiener Filters for Small-Target Radiometric Restoration |
|
5.0903 |
1063 |
Daniel |
LeMaster |
National Air and |
Multiframe-Multichannel Blind Deconvolution for Polarimetric Imagery |
|
5.0904 |
1368 |
Chow Jeng |
Wong |
Universiti Sains |
|
|
6.0101 |
1233 |
Dmitriy |
Bekker |
Jet Propulsion Laboratory |
An FPGA-Based Data Acquisition and Processing System for the MATMOS FTIR Instrument |
|
6.0102 |
1030 |
Paula |
Pingree |
JPL |
An Evaluation of the Xilinx Virtex-4 FPGA for On-Board Processing in an Advanced Imaging System |
|
6.0201 |
1409 |
Mark |
Fischman |
Jet Propulsion Laboratory |
Low-Noise Detector with RFI Mitigation Capability for the Aquarius L-Band Scatterometer |
|
6.0202 |
1076 |
|
Jones |
Jet Propulsion Laboratory |
A Lunar Array Precursor Station to Monitor the Lunar Ionosphere |
|
6.0203 |
1597 |
Brian |
Pollard |
Jet Propulsion Laboratory |
A Radar Terminal Descent Sensor
for the Mars Science Laboratory |
|
6.0204 |
1749 |
Tom |
Meehan |
JPL |
The TriG Digital Beam Steered Sounder |
|
6.0205 |
1041 |
Wen-Qin |
Wang |
University of Electronic Science and Technology of |
Conceptual Design of Near-Space Passive Bistatic SAR Systems |
|
6.0206 |
1012 |
Xin |
Bi |
|
Design and Implementation of an Ultra-High Speed Data Acquisition System for HRRATI |
|
6.0301 |
1343 |
Inseob |
Hahn |
Jet Propulsion Laboratory |
Recent Results of the Guide-2
Telescope Testbed for the SIM-Lite
|
|
6.0302 |
1406 |
Renaud |
Goullioud |
Jet Propulsion Lab |
Search for Earth-Analogs with the Planet Hunter Mission |
|
6.0303 |
1593 |
Stefan |
Martin |
Jet Propulsion Lab |
Demonstration of the Exo-Planet Detection Process using Four-Beam Nulling Interferometry. |
|
6.0304 |
1452 |
Robert |
Smythe |
JPL |
Real-Time Interferometer Control System Toolbox Evolutionary Improvements |
|
6.0501 |
1500 |
Robert |
Lynch |
Naval Undersea |
Cognitive MIMO Sonar Based Robust Target Detection for Harbor and Maritime Surveillance Applications |
|
6.0502 |
1598 |
Tiange |
Shao |
|
Performances of Variable Step-Size Adaptive Algorithms in non-Gaussian Interference Environments |
|
6.0503 |
1743 |
Andy |
Register |
Georgia Tech Research Institute |
Detection and Diagnosis of Radar Modeling Errors using Covariance Consistency |
|
6.0601 |
1203 |
Tiange |
Shao |
|
A Variable Step-Size LMP Algorithm for Heavy-Tailed Interference Suppression in Phased Array Radar |
|
6.0602 |
1424 |
hu |
xiujuan |
school of machine engineering |
An Adaptive Compensation of Moving Target Doppler Shift for Airborne Radar |
|
6.0603 |
1053 |
Hirad |
Ghaemi |
DLR ( |
CLEAN Technique in Strip-Map SAR for High-Quality Imaging |
|
6.0701 |
1725 |
Ba |
Amadou |
ENSAM-Paris |
On-Line Drilling Process Monitoring By Marginalized Particle Filter |
|
6.0702 |
1636 |
Christopher |
Kreucher |
Integrity Applications Incorporated |
Multitarget Detection and Tracking using Multi-Sensor Passive Acoustic Data |
|
6.0703 |
1633 |
David |
Kun |
The Aerospace Corporation |
A New Low-Cost CFAR Detector for Spectrum Sensing with Cognitive Radio Systems |
|
6.0704 |
1059 |
Peter |
Willett |
|
Performance Limits for Monopulse Matched Filter Samples |
|
6.0705 |
1451 |
Robert |
Hogan |
NASA |
A Comparison of Performance between Two Cluster Algorithms Applied to Mineral Spectra |
|
6.0706 |
1459 |
Robert |
Hogan |
NASA |
Mineral Emittance Spectra: Clustering and Classification using Self-Organizing Maps |
|
6.0801 |
1164 |
Todd |
Fercho |
Raytheon |
Feature-Aided Global Nearest Pattern Matching with Non-Gaussian Feature Measurement Errors |
|
6.0802 |
1523 |
|
Streit |
|
General Likelihood Function
Decomposition that is Linear in |
|
6.0803 |
1620 |
Abdollah |
Homaifar |
|
Creating Virtual Sensors using Learning Based Super Resolution and Data Fusion |
|
6.0804 |
1751 |
Jessica |
|
Booz Allen Hamilton |
On-Line Sensor Calibration and Error Modeling using Single Actuator Stimulus |
|
6.0901 |
1722 |
Abdolreza Dehghani |
Tafti |
Islamic |
A Hybrid Fuzzy Dynamic Model for Maneuvering Targets |
|
6.0902 |
1530 |
Fabrizio |
Reali |
Sapienza |
Tracking a Ballistic Target by Multiple Model Approach |
|
6.0903 |
1135 |
Per |
Skoglar |
|
On Information Measures based on Particle Mixture for Optimal Bearings-only Tracking |
|
6.0904 |
1723 |
Abdolreza Dehghani |
Tafti |
Islamic |
Fuzzy Clustering Means Data Association Algorithm using an Adaptive Neuro-Fuzzy Network |
|
6.1001 |
1341 |
Monica |
Bugallo |
Stony Brook University |
Improved Target Tracking with Particle Filtering |
|
6.1002 |
1134 |
Per |
Skoglar |
|
Improved Target Tracking with Road Network Information |
|
6.1003 |
1139 |
Francois |
Septier |
Signal Processing Group, |
Tracking of Coordinated Groups using Marginalised MCMC-Based Particle Algorithm |
|
6.1004 |
1050 |
Nicolas |
DOBIGEON |
|
Library-Based Linear Unmixing for Hyperspectral Imagery via Reversible Jump MCMC Sampling |
|
6.1101 |
1339 |
William |
Otte |
ISIS/Vanderbilt University |
A Flexible Infrastructure for Distributed Deployment in Adaptive Sensor Webs |
|
6.1102 |
1332 |
Kai |
Goebel |
|
Communication Optimizations for a Wireless Distributed Prognostic Framework |
|
6.1103 |
1114 |
WenZhan |
Song |
|
Cacades: A Reliable Dissemination Protocol for Data Collection Sensor Network |
|
6.1201 |
1535 |
Meemong |
Lee |
Jet Propulsion Laboratory |
Atmospheric Sounding Simulation Experiment Service |
|
6.1202 |
1100 |
Andrea |
Donnellan |
Jet Propulsion Laboratory |
Understanding Earthquake Fault Systems using QuakeSim Analysis and Data Assimilation Tools |
|
6.1203 |
1329 |
Ashit |
Talukder |
Jet Propulsion Laboratory |
Online Visualization of Adaptive Distributed Sensor Webs |
|
6.1204 |
1335 |
Patrice |
Cappelaere |
Vightel Corporation |
Flow-Enablement of the NASA SensorWeb using RESTful (and Secure) Workflows |
|
6.1205 |
1182 |
David |
Kaslow |
Analytical Graphics |
COTS Implementation of a Sensor Planning Service GetFeasibility Operation |
|
6.1206 |
1274 |
Costas |
Tsatsoulis |
Dept. of Computer Science and Engineering |
Sensor Web Coalition Formation via Argumentation-Based Negotiation |
|
7.0101 |
1746 |
Mehrdad |
Nourani |
|
Fault Tolerant Circuits for Highly Reliable Systems |
|
7.0102 |
1102 |
Marcio |
Juliato |
|
Efficient Fault Tolerant SHA-2 Hash Functions for Space Applications |
|
7.0103 |
1577 |
|
|
Honeywell Microelectronics |
Rad-Hard High Speed Serial Communication using Honeywell SerDes Macros |
|
7.0104 |
1466 |
Joseph |
|
BAE SYSTEMS |
Higher Performance BAE Systems Processors and Interconnects Enabling Spacecraft Applications |
|
7.0105 |
1567 |
Tanya |
Vladimirova |
|
A Novel Autonomous Low Cost On-Board Data Handling Architecture for a Pin-Point Planetary Lander |
|
7.0201 |
1243 |
Shankarnarayanan |
Ramaswamy |
BAE SYSTEMS |
A Radiation Hardened Reconfigurable FPGA |
|
7.0202 |
1375 |
Christine |
Hartzell |
|
Data System Design for a Hyperspectral Imaging |
|
7.0203 |
1481 |
John |
Samson, Jr. |
Honeywell Inc. |
NMP ST8 Dependable Multiprocessor: TRL6 Validation –Preliminary Results |
|
7.0204 |
1627 |
Karl |
Strauss |
Jet Propulsion Laboratory |
Memory Technologies and Data Recorder Design |
|
7.0205 |
1067 |
Sreelal |
Pillai |
Indian Space Research Organization |
Modular, Cost-Effective, Single Board Baseband Avionics System for Sounding Rocket Applications |
|
7.0301 |
1333 |
Craig |
Greenlaw |
Sierra Nevada Corporation |
A Flexible COTS-Based Serial Communications Solution with High Density Memory Storage |
|
7.0302 |
1205 |
Ian |
Troxel |
SEAKR Engineering, Inc. |
Trends in Radiation Susceptibility of Commercial DRAMs for Space Systems |
|
7.0401 |
1501 |
Neil |
Steiner |
USC ISI East |
Hardware Autonomy and Space Systems |
|
7.0402 |
1071 |
Brock |
LaMeres |
|
Dynamic Reconfigurable Computing Architecture for Aerospace Applications |
|
7.0403 |
1207 |
Ian |
Troxel |
SEAKR Engineering, Inc. |
Achieving Flexible Waveform and Data Routing with the Programmable Space IP Modem |
|
7.0501 |
1421 |
|
Rezgui |
ACTEL Corporation |
SET Characterization and Mitigation in RTAX-S Antifuse FPGAs |
|
7.0502 |
1426 |
Peter |
|
|
Operational Calibration of Mixed-Signal Integrated Circuits in Hostile Environments |
|
7.0503 |
1529 |
H. Alan |
Mantooth |
|
SiGe BiCMOS Fully Differential
Amplifier for |
|
7.0601 |
1734 |
Bill |
Bjorndahl |
Northrop Grumman Space Technology |
Benefits of a Bayesian Approach to Anomaly and Failure Investigations |
|
7.0602 |
1014 |
Kasemsan |
Siri |
The Aerospace Corporation |
High-Voltage-Input, Low-Voltage-Output, Series-Connected Converters with Uniform Voltage Distribution |
|
7.0603 |
1147 |
Edgar |
Cilio |
|
SiC Intelligent Multi Module DC/DC Converter System for Space Applications |
|
7.0604 |
1544 |
Luigi |
Schirone |
La Sapienza - DIAA |
Reliable Design for MPPT Management through the SMP Technique |
|
7.0605 |
1545 |
Luigi |
Schirone |
La Sapienza - DIAA |
On the Reliability of Modular Power Conversion Systems for Small Spacecraft |
|
7.0701 |
1288 |
Brian |
Keyes |
MesoScribe Technologies, Inc. |
High Temperature Telemetry Systems for in Situ Monitoring of Gas Turbine Engine Components |
|
7.0702 |
1128 |
Desheng |
Ma |
|
A 6th Order Butterworth SC Low Pass Filter for Cryogenic Applications From -180ºc to 120ºc |
|
7.0703 |
1642 |
Alan |
Mantooth |
|
Cryogenic Characterization of Lateral DMOS Transistors for Lunar Applications |
|
7.0704 |
1420 |
JOHN |
MCCOLLUM |
ACTEL CORPORATION |
ASIC versus Antifuse FPGA Reliability |
|
7.0705 |
1318 |
Linda |
Del Castillo |
Jet Propulsion Laboratory |
Advanced Embedded Active Assemblies for Extreme Space Applications |
|
7.0801 |
1077 |
Brock |
LaMeres |
|
Electrical Characterization of a Novel Coaxial Die-to-Die Interconnect |
|
7.0802 |
1601 |
Donald |
Schatzel |
Jet Propulsion Laboratory |
Improving Heat Transfer Performance of Printed Circuit Boards |
|
7.1001 |
1475 |
George |
Cancro |
JHU/APL |
Current Fault Management Trends in NASA`s Planetary Spacecraft |
|
7.1002 |
1086 |
Todd |
Bayer |
NASA / Jet Propulsion Laboratory |
Mars Reconnaissance Orbiter In-Flight Anomalies and Lessons Learned: An Update |
|
7.1003 |
1251 |
Arslan |
Tughrul |
The |
Fault Tolerant and Adaptive GPS Attitude Determination System |
|
7.1004 |
1070 |
Rajendra |
Kumar |
The Aerospace Corporation |
Accurate Reliability Modeling using Markov Analysis with Non-Constant Hazard Rates |
|
7.1005 |
1285 |
Nazeeh |
Aranki |
JPL |
Fast and Adaptive Lossless On-Board Hyperspectral Data Compression System for Space Applications |
|
7.1006 |
1697 |
Zhanshan (Sam) |
Ma |
|
Is Chaos Theory Relevant to Reliability and Survivability? |
|
7.1101 |
1741 |
Pan |
Xiaogang |
|
Method of Combine Orbit Determination and Its Application in Space Based Technology |
|
7.1102 |
1224 |
Yoshiyuki |
Ishijima |
Japan Aerospace Exploration Agency |
Design and Development of the First Quasi-Zenith Satellite Attitude and Orbit Control System |
|
7.1103 |
1456 |
Jesse |
Koenig |
SpaceDev, Inc. |
A Novel Attitude Guidance Algorithm for Exclusion Zone Avoidance |
|
7.1104 |
1330 |
Oliver |
Martin |
SpaceDev |
Spacecraft Jitter Prediction using 6-DOF Disturbance Measurements |
|
7.1105 |
1075 |
Nadjim Mehdi |
Horri |
|
Optimal Satellite Attitude Control: a Geometric Approach |
|
7.1106 |
1675 |
James |
Speed |
Ball Aerospace & Technologies Corp. |
Design and Development of the Ball Aerospace Flexible Space Camera FSC-701 |
|
7.1107 |
1720 |
YuHong |
Miao |
Systems Engineering Institute |
Discussions on the Loss Functions of Attitude Determination |
|
7.1108 |
1729 |
He |
Fenghua |
|
Switching Logic Design Based on Finite-Time Gain Measure for A Flight Vehicle with Multiple Actuators |
|
7.1109 |
1502 |
Cliff |
Sedlund |
SpaceDev, Inc. |
A Simple Sun-Pointing Magnetic Controller for Satellites in Equatorial Orbits |
|
7.1110 |
1141 |
Hamid |
Torab |
IUST |
LQG/LTR Control of 2DOF Free Gimbal Gyros |
|
7.1111 |
1124 |
Mohammad Hatef |
Keshvadi |
|
Comparison of Different Filtering Techniques for the Orbit Determination Problem |
|
7.1112 |
1705 |
Hamed Hossein |
Afshari |
Aerospace Department, |
A New Adaptive Approach in Determination of Closed-Loop Guidance Law for Injection Problem |
|
7.1201 |
1733 |
Richard |
Linderman |
AFRL/RI |
Parallelizing a Multi-Frame Blind Deconvolution Algorithm on Clusters of Multicore Processors |
|
7.1202 |
1735 |
Linderman |
Richard |
AFRL/RI |
Dependable Embedded Software through FPGA Based Emulation |
|
8.0101 |
1389 |
Craig |
Cruzen |
NASA |
Operational Considerations and Comparisons of the Saturn, Space Shuttle and Ares Launch Vehicles |
|
8.0102 |
1064 |
Brian |
Muirhead |
Jet Propulsion Laboratory |
Constellation Lunar Capability Point of Departure Architecture |
|
8.0103 |
1310 |
Chel |
Stromgren |
NASA |
Lunar Exploration Architecture Level Key Drivers and Sensitivities |
|
8.0104 |
1093 |
Daniel |
Mazanek |
|
Surface Buildup Scenarios and Outpost Architectures for Lunar Exploration |
|
8.0105 |
1314 |
Chel |
Stromgren |
SAIC |
Launch Order, Launch Separation, and Loiter in the Constellation 1½-Launch Solution |
|
8.0106 |
1609 |
Charles |
Reynerson |
Boeing |
Human Spaceflight Systems Modeling Applied to Lunar Surface Bases: Architecture Comparisons |
|
8.0201 |
1418 |
Brian |
Wilcox |
Jet Propulsion Laboratory |
Low-Cost Propellant Launch to LEO from a Tethered Balloon: Recent Progress |
|
8.0202 |
1405 |
William |
Rothschild |
John Frassanito & Associates, Inc. |
Applying Proven Technologies for a near Term, High Confidence Heavy Lift Launch Vehicle |
|
8.0203 |
1667 |
Lauren |
Dreyer |
SpaceX |
Latest Developments on SpaceX’s Falcon 1 and Falcon 9 Launch Vehicles and Dragon Spacecraft |
|
8.0301 |
1297 |
Kris |
Zacny |
Honeybee Robotics |
Rapid Assembly of Spacecraft Structures for Responsive Space |
|
8.0302 |
1358 |
William |
|
SpaceDev |
The SpaceDev Trailblazer Satellite: Opening a New Era of Responsive Space |
|
8.0303 |
1258 |
Keith |
Nicewarner |
SpaceDev, Inc. |
Software for the Responsive Space Trailblazer Satellite |
|
8.0304 |
1294 |
Joseph |
Simonds |
SMC/XRC |
DoD Experiments on Commercial Spacecraft |
|
8.0305 |
1691 |
Hallie |
Walden |
Ball Aerospace & Technologies Corp. |
STP-SIV and ORS ISET Spacecraft-To-Payload Interface Standards |
|
8.0306 |
1464 |
Swaminathan |
Balaraman |
Center for Aerospace Research |
Space |
|
8.0401 |
1664 |
Paul |
Graven |
Microcosm, Inc. |
Implementation of a Plug-and-Play Attitude Determination and Control System on PnPSat |
|
8.0402 |
1637 |
|
Boncyk |
Design_Net Engineering, LLC |
Revolutionary Design Meets Spacecraft Reality: Lessons Learned in Developing a PnPSat Power System |
|
8.0403 |
1399 |
George |
Cancro |
Johns |
NASA SmallSat Modular Hardware and Software Standardization |
|
8.0404 |
1638 |
TA |
Sands |
53 EWG/XP |
Improved Hamiltonian Adaptive Control of Spacecraft |
|
8.0501 |
1525 |
Mark |
Hyatt |
NASA |
Instrumentation and Sensor Technologies for the Measurement and Detection of Lunar Dust |
|
8.0502 |
1510 |
Carlos |
Calle |
NASA |
Reduced Gravity Flight Demonstration of the Dust Shield Technology for Optical Systems |
|
8.0503 |
1417 |
Brian |
Wilcox |
Jet Propulsion Laboratory |
ATHLETE: A Cargo and Habitat Transporter for the Moon |
|
8.0504 |
1460 |
|
Comstock |
NASA Headquarters |
Technologies Addressing Exploration Needs from the Portfolio of NASA`s Innovative Partnerships Program |
|
8.0601 |
1509 |
Karl |
Kiefer |
Invocon, Inc. |
Case Study-Small Business Technology Infusion |
|
8.0602 |
1450 |
Grant |
|
Paragon Space Development Corp. |
Paragon’s Experience in Successful Technology Development and Infusion within the SBIR Program |
|
8.0603 |
1196 |
Edward |
|
NASA/Johnson Space Center |
Space Based Solar Power Flight Demonstration Concept |
|
8.0604 |
1047 |
Virgil |
Adumitroaie |
JPL |
Technology Infusion Challenges from a Decision Support Perspective |
|
8.0701 |
1287 |
Linda |
Brewster |
NASA - MSFC |
Proximity Operations and Docking Sensor Development |
|
8.0702 |
1454 |
Chiun-Hong |
Chien |
NASA-JSC/GeoControl |
Target Acquisition using Natural Feature Image Recognition |
|
8.0703 |
1698 |
Zhanshan (Sam) |
Ma |
|
Dragonfly Preying on Flying Insects |
|
8.0801 |
1295 |
Umaa |
Rebbapragada |
|
Onboard Detection of Natural Sulfur on a Glacier via a SVM and Hyperion Data |
|
8.0802 |
1296 |
Seungwon |
Lee |
Jet Propulsion Laboratory |
Adapting AMDIS for Autonomous Spectral Identification of Hazardous Compounds for ISS Monitoring |
|
8.0803 |
1313 |
Ashit |
Talukder |
JPL/Caltech |
Automated Cyclone Tracking using Multiple Remote Satellite Data via Knowledge Transfer |
|
8.0804 |
1607 |
Umaa |
Rebbapragada |
|
Improving Onboard Analysis of Hyperion Images by Filtering Mislabeled Training Data Examples |
|
8.0901 |
1580 |
Ryan |
McClelland |
NASA GSFC |
Mechanical Overview of the International X-Ray Observatory |
|
8.0902 |
1610 |
Marco |
Sabatini |
Universita` Roma La Sapienza |
Autonomous Behavioral Strategy and Optimal Centralized Guidance for On-Orbit Self Assembly |
|
8.1001 |
1731 |
Christian |
Rodriguez |
|
The Use of Iridium’s Satellite Network for Nanosatellite Communications in Low Earth Orbit |
|
8.1002 |
1017 |
Swaminathan |
Balaraman |
Center for Aerospace Research |
Magnetic Attitude Control for a Spinning Spacecraft with Cross Product of Inertia |
|
8.1101 |
1184 |
David |
Buecher |
Lockheed Martin Space Systems Company |
Tension-Only, Moment-Free, Separation Mechanism for Mars Science Laboratory Aeroshell |
|
8.1102 |
1589 |
Matthew |
Merrow |
Jet Propulsion Laboratory |
MSL Rover Structural Verification and Validation via Centrifuge Testing |
|
8.1103 |
1641 |
Andy |
Etters |
Jet Propulsion Laboratory |
Mars Science Laboratory Descent Stage Propulsion Tubing Configuration and Design |
|
8.1104 |
1154 |
Alexander |
Eremenko |
JPL |
MSL V&V CEDL Mechanical Systems Test Program |
|
8.1105 |
1204 |
Michael |
Shafer |
Jet Propulsion Laboratory |
Long Cable Deployments during Martian Touchdown: Lessons Learned |
|
8.1106 |
1513 |
|
McCoy |
Caltech / Jet Propulsion Laboratory |
Mechanical Accommodation of Mars Science Laboratory Surface Thermal Requirements |
|
8.1201 |
1176 |
John |
Dankanich |
|
The NASA In-Space Propulsion
Technology Project, Products, and |
|
8.1202 |
1621 |
John |
Dankanich |
Gray Research, Inc. |
Mars Ascent Vehicle Technology Planning |
|
8.1203 |
1628 |
John |
Dankanich |
Gray Research, Inc. |
Recent Electric Propulsion Development Activities for NASA Science Missions |
|
8.1204 |
1474 |
|
Sullivan |
Caltech/Jet Propulsion Lab |
Near-Field Angular Distributions of High Velocity Ions for Low-Power Hall Thrusters |
|
9.0101 |
1090 |
Salvatore |
Luongo |
CIRA - Italian Aerospace Research Centre |
An Optimal 3D Analytical Solution for Collision Avoidance Between Aircraft |
|
9.0102 |
1651 |
Irfan |
Manarvi |
|
Using FEM and CFD to Locate Cracks in Compressor Blades for Non Destructive Inspections |
|
9.0103 |
1394 |
Mohammad |
Rahim |
|
Inertial Navigation System Performance Improvement by Integration of INS with System Dynamics |
|
9.0301 |
1197 |
Peter |
Lindahl |
|
Simulation, Design and Validation of a UAV SOFC Propulsion System |
|
9.0302 |
1244 |
Nazim |
Ure |
|
Design of a Multi Modal Control Framework for Agile Maneuvering UCAV |
|
9.0303 |
1171 |
Mauricio |
Castillo-Effen |
GE Global Research |
Analysis of Autonomous Deconfliction in Unmanned Aircraft Systems for Testing and Evaluation |
|
9.0304 |
1240 |
Adam |
Weaver |
Air Force Institute of Technology |
Image-Based Relative Navigation for the Autonomous Refueling Problem using Predictive Rendering |
|
9.0305 |
1259 |
Nikita |
Visnevski |
GE Research |
A UAS Capability Description Framework: Reactive, Adaptive, and Cognitive Capabilities in Robotics |
|
9.0306 |
1060 |
Kamil |
TULUM |
TUBITAK-SAGE |
Situation Aware |
|
9.0307 |
1305 |
Rodrigo |
Rangel |
Instituto Tecnologico de Aeronautica - ITA |
Development of a Complete UAV System using COTS Equipment |
|
9.0308 |
1447 |
Timothy |
|
Embry-Riddle Aeronautical University |
A Technology Survey and Regulatory Gap Analysis of UAS Technologies for C3 |
|
9.0309 |
1717 |
Shane |
Degen |
Australian Research Centre for Aerospace Automation |
Tensor Field Guidance for Time-Based Waypoint Arrival of UAVs by 4D Trajectory Generation |
|
9.0310 |
1091 |
Niki |
|
|
2D Tracking and Over-Flight of a Target by Means of a Non-Linear Guidance Law for UAV |
|
9.0311 |
1309 |
lihong |
zhao |
|
Optimal Controller for an Autonomous Helicopter in Forward Flight |
|
9.0312 |
1237 |
Pritesh |
Narayan |
|
Computationally Adaptive Multi-Objective Trajectory Optimization for UAS with Variable Planning Deadlines |
|
9.0313 |
1140 |
Paul |
Wu |
|
On-Board Multi-Objective |
|
9.0314 |
1161 |
Soha |
Pouya |
|
Intelligent Landing of Autonomous Aerial Vehicles using Fuzzy Logic Control |
|
9.0401 |
1364 |
|
Hendrix |
Air Force Institute of Technology |
LQG Control Design for a Hovering Micro Air Vehicle using an Optical Tracking System |
|
9.0402 |
1753 |
Danilo |
Bassi |
|
Optimal Attitude Control Parameters via Stochastic Optimization Framework for Autonomous Aircraft |
|
9.0403 |
1410 |
Corey |
Ippolito |
|
Applications of Payload Directed Flight |
|
9.0404 |
1292 |
Michael |
Shepherd |
|
Limited Simulator Aircraft Handling Qualities Evaluation of an Adaptive Controller |
|
9.0405 |
1162 |
Lingyu |
Yang |
|
Control Allocation and Management for Aircraft with Multiple Effectors |
|
9.0406 |
1118 |
Jing |
Zhang |
|
Modeling and Attitude Control of Aircraft with Center of Gravity Variations |
|
9.0407 |
1718 |
Richard |
Millar |
Naval |
Dragonfly as a Model for UAV/MAV Flight and Communication Controls |
|
9.0408 |
1188 |
Mohammad |
Rahim |
|
Fuzzy Optimal Terrain following Flight |
|
9.0409 |
1127 |
Amirreza |
Kosari |
|
Dynamic Constrained TF/TA Flights with Constant Energy |
|
9.0410 |
1748 |
Amirreza |
Kosari |
|
An Optimal Strategy for Improving Ride Quality of Flexible Aircraft |