| Principal Investigator |
Institution |
Project Title |
 |
 |
 |
| Berk |
Spectral Sciences, Inc. |
Plume Tracer: Interactive Mapping of Atmospheric Plumes via GPU-based Volumetric Ray Casting |
| Beyon |
Langley Research Center |
High-Speed On-Board Data Processing for Science Instruments (HOPS) |
| Bock |
Scripps Institution of Oceanography, UCSD |
Real-Time In Situ Measurements for Earthquake Early Warning and Spaceborne Deformation Measurement Mission
Support |
| Bock |
Scripps Institution of Oceanography, UCSD |
Next-Generation Real-Time Geodetic Station Sensor Web for Natural Hazards Research and Applications |
| Braverman |
Jet Propulsion Laboratory |
Geostatistical Data Fusion for Remote Sensing Applications |
| Braverman |
Jet Propulsion Laboratory |
Multivariate Data Fusion and Uncertainty Quantification for Remote Sensing |
| Chien |
Jet Propulsion Laboratory |
IPEX: Intelligent Payload Flight Experiment
|
| Clune |
Goddard Space Flight Center |
Automated Event Service: Efficient and Flexible Searching for Earth Science Phenomena |
| Clune |
Goddard Space Flight Center |
Automated Tracking of Earth Science Phenomena for Ingest into a Moving Object Database to Enable Systematic Studies |
| Crawford |
Purdue University |
An Advanced Learning Framework for High Dimensional Multi-Sensor Remote Sensing Data |
| Donnellan |
Jet Propulsion Laboratory |
QuakeSim: Multi-Source Synergistic Data Intensive Computing for Earth Science |
| Donnellan |
Jet Propulsion Laboratory |
Increasing Utility of UAVSAR and Model Applications |
| Donnellan |
Jet Propulsion Laboratory |
QuakeSim: Increasing Accessibility and Utility of Spaceborne and Ground-based Earthquake Fault Data |
| Flatley |
Goddard Space Flight Center |
Advanced Hybrid On-Board Data Processor - SpaceCube 2.0 |
| French |
USC Information Sciences Institute |
Autonomous, On-board Processing for Sensor Systems |
| French |
USC Information Sciences Institute |
Autonomous On-Board Processing for Sensor Systems (A-OPSS) Technology Transition for HyspIRI |
| Goodman |
Marshall Space Flight Center |
Technology Infusion for the Real Time Mission Monitor |
| Hristova-Veleva |
Jet Propulsion Laboratory |
Fusion of hurricane models and observations: Developing the technology to improve the forecasts |
| Hua |
Jet Propulsion Laboratory |
Advanced Rapid Imaging & Analysis for Monitoring Hazards (ARIA-MH) |
| Ivancic |
Glenn Research Center |
Real-Time and Store-and-Forward Delivery of Unmanned Airborne Vehicle Sensor Data |
| Ivancic |
Glenn Research Center |
Secure, Autonomous, Intelligent Controller for Integrating Distributed Emergency Response Satellite Operations |
| Kolitz |
C. S. Draper Laboratory |
EPOS for Coordination of Asynchronous Sensor Webs |
| Lou |
Jet Propulsion Laboratory |
Onboard Processing and Autonomous Data Acquisition for the DESDynI Mission |
| Lynnes |
Goddard Space Flight Center |
Multi-Sensor Data Synergy Advisor (MDSA) |
| Mandl |
Goddard Space Flight Center |
A High Performance, Onboard Multicore Intelligent Payload Module for Orbital and Suborbital Remote Sensing Missions |
| Mandl |
Goddard Space Flight Center |
Sensor Web 3D to Provide Cost-Effective Customized Data Products for Decadal Missions |
| Mandl |
Goddard Space Flight Center |
GEOSS Architecture for Remote Sensing Products for Disaster Management and Risk Assessment |
| Moghaddam |
University of Southern California |
Land Information System for SMAP Tier-1 and AirMOSS Earth Venture-1 Decadal Survey Missions: Integration of SoilSCAPE, remote sensing, and modeling |
| Moghaddam |
University of Southern California |
Ground Network Design and Dynamic Operation for Near Real-Time Validation of Space-Borne Soil Moisture Measurements |
| Nemani |
Ames Research Center |
Semi-Automatic Science Workflow Synthesis for High-End Computing on the NASA Earth Exchange |
| Nemani |
Ames Research Center |
Anomaly Detection and Analysis Framework for Terrestrial Observation and Prediction System (TOPS) |
| Nemani |
Ames Research Center |
Prototyping High-End Computing On-demand Model Execution Environment |
| Peters-Lidard |
Goddard Space Flight Center |
A mission simulation and evaluation platform for terrestrial hydrology using the NASA Land Information System (LIS) |
| Peters-Lidard |
Goddard Space Flight Center |
Integration of Data Assimilation, Stochastic Optimization and Uncertainty Modeling within NASA Land Information System (LIS) |
| Pingree |
Jet Propulsion Laboratory |
On-Board Processing (OBP) to Advance the PanFTS Imaging System for GEO-CAPE |
| Pingree |
Jet Propulsion Laboratory |
COVE: CubeSat On-board Processing Validation Experiment |
| Pingree |
Jet Propulsion Laboratory |
On-Board Processing to Optimize the MSPI Imaging System for ACE |
| Rosen |
Jet Propulsion Laboratory |
InSAR Scientific Computing Environment (ISCE) |
| Schneider |
University of Florida |
Moving Objects Database Technology for Weather Event Analysis and Tracking |
| Shen |
University of Maryland |
Integration of the NASA CAMVis and Multiscale Analysis Package (CAMVis-MAP) For Tropical Cyclone Climate Study |
| Shen |
University of Maryland |
Coupling NASA Advanced Multi-scale Modeling and Concurrent Visualization Systems for Improving Predictions of Tropical High-impact Weather |
| Talabac |
Goddard Space Flight Center |
End-to-End Design and Objective Evaluation of Sensor Web Modeling and Data Assimilation System Architectures: Phase II |
| Tanelli |
Jet Propulsion Laboratory |
Instrument Simulator Suite for Atmospheric Remote Sensing |
| Tanelli |
Jet Propulsion Laboratory |
Unified Simulator for Earth Remote Sensing (USERS) |
| Tao |
Goddard Space Flight Center |
Empowering Cloud Resolving Models Through GPU and Asynchronous IO |
| von Allmen |
Jet Propulsion Laboratory |
OSCAR: Online Services for Correcting Atmosphere in Radar |