Use the letter index below, or the scroll bar, to move through an alphabetical list of contributing authors. Author details are those provided at submission, and are known to be incomplete. Please report errors or omissions to info@planetaryprobe.eu; updates will be provided online.
| Aboudan, A. |
Aerobot Autonomous Navigation And Mapping For Planetary Exploration |
|
| Adam, O. |
Multiple pressure measurements on a planetary atmospheric entry vehicle for attitude determination |
|
| Adams, Michael |
Venus Mobile Explorer: A Mission Concept Study for the National Research Council Planetary Decadal Survey |
|
| Adams, D. |
Lessons learned and flight experience from planetary parachute development |
|
| Adler, Mark |
The Galahad Asteroid Sample Return Mission |
|
| Mitigating the Mission Risks of Uncertain Natural Surfaces: Lessons for Mars and Asteroids |
|
| Aivar-García, Laura |
VELOONUS: A Computational Tool For Balloon Trajectories In Venus |
|
| Analysis and Design of Microrover Delivery System |
|
| Alkalai, L. |
An Overview of the MoonRise Lunar Sample Return Mission from the South Pole-Aitken Basin |
|
| Amato, Michael |
Venus Mobile Explorer: A Mission Concept Study for the National Research Council Planetary Decadal Survey |
|
| Low-cost Relocatable Lunar Polar Lander and Lunar Surface Sample Return |
|
| Anderson, R. C. |
Mitigating the Mission Risks of Uncertain Natural Surfaces: Lessons for Mars and Asteroids |
|
| Andrews, Daniel |
LCROSS Lunar Impactor - Pioneering Risk-Tolerant Exploration In A Search For Water On The Moon |
|
| Andrienko, Daniil |
Models Of Spectral Radiation Heat Transfer For Martian Space Vehicles |
|
| Aparicio del Moral, Beatriz |
New Control System for Space instruments. Application to MEDUSA Experiment |
|
| Arnold, Mark |
DRIFT/VISC: Distributed, Redundant, and Inherently Fault Tolerant Microprobe Concept |
|
| Arnold, Jim |
Multi-mission Earth entry vehicle design trade space and concept development status |
|
| Validation Testing of a New Dual Heat Pulse, Dual Layer TPS |
|
| Asmar, Sami |
Science-Quality Oscillators for Deep Space Probes |
|
| Atchison, J.A. |
Microscale Atmospheric Reentry Sensors |
|
| Atkinson, David H. |
Entry Probe Missions to the Giant Planets |
|
| Science-Quality Oscillators for Deep Space Probes |
|
| Backes, P. |
A Sample Handling, Encapsulation, and Containerization Subsystem for Mars Sample Caching Missions |
|
| Baker, Charles |
Venus Mobile Explorer: A Mission Concept Study for the National Research Council Planetary Decadal Survey |
|
| Venus Intrepid Tessera Lander (VITaL): A Mission Concept Study For The National Research Council Planetary Decadal Survey |
|
| Baker, Ray |
Throttling Bipropellant System for Terminal Descent Propulsion |
|
| Balat-Pichelin, Marianne |
Ultra-High Temperature Ceramics For Hypersonic Entry Of Slender-Shaped Advanced Space Vehicles |
|
| Balint, Tibor |
Venus Mobile Explorer: A Mission Concept Study for the National Research Council Planetary Decadal Survey |
|
| The Venus Flagship Study: Atmospheric Science From Two Descent/Landing Vehicles And Two Balloons |
|
| Venus Mobile Explorer (VME): Near-Surface Traversing with Metallic Bellows |
|
| Barnes, Jason W. |
Science, Instrumentation, and Operations Concepts for a Titan Airplane |
|
| Bauer, Nicole |
Recovery Of In-Space Cubesat Experiments (RICE) Project |
|
| Earth Entry Vehicle Impact Analysis |
|
| Beck, R. |
The Evolution of the MSL Heatshield (Part II) |
|
| Berthet, G. |
Detection of aerosols in planetary atmospheres using the new light aerosol counter LOAC |
|
| Bettanini, C. |
Aerobot Autonomous Navigation And Mapping For Planetary Exploration |
|
| Biele, J. |
From the Rosetta Lander Philae to an asteroid hopper: Lander concepts for small bodies missions |
|
| Bienstock, B. |
The SAGE New Frontiers Mission to Venus |
|
| Blanc, M. |
The Europa Jupiter System Mission: A Pathfinder for Future Landings in the Jupiter System |
|
| Blum, J. |
A simple instrument to in situ characterize the tensile strength of cometary materials |
|
| Bonetti, Davide |
Global Entry Corridor: Accurate Tool For Landing Site Selection In Planetary Exploration |
|
| Bonitz, R. |
Phoenix Mars Lander Robotic Arm Mission Operations |
|
| Bonnefond, F. |
AEROFAST: AEROcapture for Future Space Transportation |
|
| Boer, Sebastiaan |
Tethered Balloon System To Explore The Martian Atmosphere |
|
| Boronowsky, Kenny |
Testing and Verification for the SOAREX-7 TDRV Flight |
|
| Braun, Bobby |
NASA's Technology and Innovation Programs |
|
| A Methodology for Aerothermodynamic Shape Optimization of Hypersonic Entry Aeroshells |
|
| Brinckerhoff, W. |
Investigating the origin and evolution of Venus with descent probe mass spectrometry |
|
| In-situ Chemical Analysis Of Small Bodies With Laser Mass Spectrometry |
|
| Brugarolas, Paul B. |
The RCS Attitude Controller For the Exo-Atmospheric And Guided Entry Phases Of The Mars Science Laboratory |
|
| Bruvold, K. |
Reconstruction of EDL Communications for the 2007 Phoenix Mars Lander |
|
| Bullock, M. |
The Venus Flagship Study: Atmospheric Science From Two Descent/Landing Vehicles And Two Balloons |
|
| Bunce, E. |
The Europa Jupiter System Mission: A Pathfinder for Future Landings in the Jupiter System |
|
| Burdick, G. |
The SAGE New Frontiers Mission to Venus |
|
| Burkhart, D. |
Mars Science Laboratory SkyCrane New Technologies |
|
| Button, E. |
Blunted Cone Heatshields for Atmospheric Entry Vehicles |
|
| Cabral, M. |
Data Compression of Science and Housekeeping Data for Planetary Probe Missions |
|
| Camery, Anna |
A UHF High Power Transceiver System With Wireless Interface Modules For High Altitude Data Acquisition And Control |
|
| Capuano, M. |
Landing Site Targeting and Constraints for ExoMars 2016 Mission |
|
| Catling, D. |
Results from the Phoenix Atmospheric Structure Experiment |
|
| Chan, Bryan |
Recovery Of In-Space Cubesat Experiments (RICE) Project |
|
| Chavers, Greg |
Robotic Lunar Landers for Science and Exploration |
|
| Chazot, O. |
Evaluation of the Effects of Distributed Roughness: Induced Transition on the EXPERT Vehicle |
|
| Cheatwood, Neal |
MSL EDL Instrumentation (MEDLI): From Instrumentation Concept to Flight Hardware |
|
| Chen, Allen |
Atmospheric Sensitivities and Characterization Efforts for the Mars Science Laboratory Entry, Descent, and Landing System |
|
| Cheng, F. |
Mitigating the Mission Risks of Uncertain Natural Surfaces: Lessons for Mars and Asteroids |
|
| Chester, Ed |
DRIFT/VISC: Distributed, Redundant, and Inherently Fault Tolerant Microprobe Concept |
|
| VELOONUS: A Computational Tool For Balloon Trajectories In Venus |
|
| Analysis and Design of Microrover Delivery System |
|
| Cichocki, Filippo |
Aerobraking Mission Analysis Tool For Mars Exploration Missions |
|
| Clark, K. |
The Europa Jupiter System Mission: A Pathfinder for Future Landings in the Jupiter System |
|
| Cohen, Barbara |
Robotic Lunar Landers for Science and Exploration |
|
| Collins, C. |
A Sample Handling, Encapsulation, and Containerization Subsystem for Mars Sample Caching Missions |
|
| Colombatti, G. |
Aerobot Autonomous Navigation And Mapping For Planetary Exploration |
|
| Congdon, William |
Development of Design and Production Processes for a Block-Ablator Heatshield with Preliminary Test Results |
|
| Cooper, S. |
Development of a Lightweight, Energy Absorbing Soft-Landing System for Robotic Probes |
|
| Coustenis, Athena |
Future Multi-Probe Missions to Titan and Enceladus |
|
| Scientific Objectives For A Future Titan Mission |
|
| The Europa Jupiter System Mission: A Pathfinder for Future Landings in the Jupiter System |
|
| Cozmuta, Ioana |
Application of CEV Sizing Process of PICA to Stardust |
|
| A Monte Carlo based Thermal Margin Derivation for Flight Environments |
|
| Crane, Eleanor |
Mars Science Laboratory Parachute Dynamics Modeling and Simulation |
|
| Cruz, J. |
Subsonic and Transonic Wind Tunnel Testing of Two Inflatable Aerodynamic Decelerators |
|
| Davis, Jody |
POST2 End-To-End Descent And Landing Simulation For ALHAT Design Analysis Cycle 2 |
|
| Day, S. |
Technology Development for Long Duration Mid-Cloud Level Venus Balloon |
|
| De Rosa, D. |
An Analysis of Illumination and Communication Conditions near Lunar South Pole based on Kaguya data |
|
| De Rosa, F. |
Design of Slug Calorimeters for Re-entry Test Vehicles |
|
| Debei, S. |
Aerobot Autonomous Navigation And Mapping For Planetary Exploration |
|
| Del Castillo, Linda |
Effects Of The Venus Ground Ambient Environment On Materials |
|
| Deutsch, Leslie |
Technology Development For A Long Duration, Mid-Cloud Level Venus Balloon |
|
| Dietze, C. |
Baseline design of a mobile asteroid surface scout (MASCOT) for the Hayabusa-2 mission |
|
| Dillman, R. |
Flight Performance of the Inflatable Reentry Vehicle Experiment (IRVE-II) |
|
| Djordjevic, Nik |
Concept of Operations Study of a Killer Asteroid Destruction Flight Demonstrator Program |
|
| Dougherty, M. |
The Europa Jupiter System Mission: A Pathfinder for Future Landings in the Jupiter System |
|
| Douglas, Christopher |
Minimally Shielded Extreme Environment Power Electronic System for Flywheel Energy Storage |
|
| Dumontel, M. |
Landing Site Targeting and Constraints for ExoMars 2016 Mission |
|
| García Yárnoz, D. |
Marsnext Multiple Lander Targeting Trajectory Computation And Navigation |
|
| Garvin, J. |
Low-cost Relocatable Lunar Polar Lander and Lunar Surface Sample Return |
|
| Geelen, Kelly |
Study Of Planetary Entry Probes (PEP) For Venus And Outer Planets: Saturn, Uranus And Neptune |
|
| Gelly, Gregory |
Neural Networks As A Guidance Solution For Aerocapture, Hypersonic Entry And Soft-Landing |
|
| Giovangrossi, Giacomo |
Vented Airbags: a new promising technology for Mars landers |
|
| New EDLS Architecture For Small Mars Landers |
|
| Glaze, Lori |
Venus Mobile Explorer: A Mission Concept Study for the National Research Council Planetary Decadal Survey |
|
| Venus Intrepid Tessera Lander (VITaL): A Mission Concept Study For The National Research Council Planetary Decadal Survey |
|
| Venus Mobile Explorer (VME): Near-Surface Traversing with Metallic Bellows |
|
| Gowen, Rob |
Potential Micro-Penetrator Applications in the Solar System |
|
| Grasset, O. |
The Europa Jupiter System Mission: A Pathfinder for Future Landings in the Jupiter System |
|
| Greeley, R. |
The Europa Jupiter System Mission: A Pathfinder for Future Landings in the Jupiter System |
|
| Griebel, Hannes S. |
High Altitude Sounding On Mars With An Inflatable Hypersonic Drag Body (Ballute) |
|
| The Scientific And Public Outreach Value Of Low Resolution Visual Monitoring Cameras On Planetary Probes |
|
| Grossir, G. |
Evaluation of the Effects of Distributed Roughness: Induced Transition on the EXPERT Vehicle |
|
| Guarnieri, Vincenzo |
Exomars Planetary Protection Training Experience |
|
| Gurvits, Leonid |
Radio astronomy experiments with planetary probes |
|
| Hall, J. |
Technology Development for Long Duration Mid-Cloud Level Venus Balloon |
|
| The Venus Flagship Study: Atmospheric Science From Two Descent/Landing Vehicles And Two Balloons |
|
| Haukka, Harri |
Next Generation Semi-hard Penetrator - MetNet for Mars |
|
| Haya Ramos, Rodrigo |
Evolution of the ExoMars EDL Mission Analysis |
|
| Global Entry Corridor: Accurate Tool For Landing Site Selection In Planetary Exploration |
|
| Herdrich, Georg |
Atmospheric Entry Simulation Capabilities of the IRS Plasma Wind Tunnel PWK3 for Mars and Venus |
|
| Holmes, Brandy |
Stratospheric Stability Of A Probe Descending Under Parachute |
|
| Howard, Austin |
Small Probes as Flight Test Beds for Thermal Protection Materials |
|
| Hughes, S. |
Flight Performance of the Inflatable Reentry Vehicle Experiment (IRVE-II) |
|
| Hwang, Helen |
The Evolution of the MSL Heatshield (Part II) |
|
| Karatekin, O. |
Multiple pressure measurements on a planetary atmospheric entry vehicle for attitude determination |
|
| Karpati, Gabriel |
Venus Mobile Explorer: A Mission Concept Study for the National Research Council Planetary Decadal Survey |
|
| Kazeminejad, Bobby |
Titan‘s New Pole: Implications For The Huygens Probe Impact Coordinates |
|
| Kerzhanovich, V.V. |
Technology Development for Long Duration Mid-Cloud Level Venus Balloon |
|
| Khartov, V.V. |
The investigation of Venus by probes and balloons. The Russian mission Venera-D |
|
| Kipp, D. |
Terrain Safety Assessment Approach for Mars Science Laboratory |
|
| Kohler, J. |
A Penetrator for the Jupiter Ganymede Orbiter Mission |
|
| Kornfeld, R. |
Reconstruction of EDL Communications for the 2007 Phoenix Mars Lander |
|
| Korzun, Ashley |
Performance And Aerodynamic Characterization Of Supersonic Retropropulsion For Mars Entry, Descent, And Landing |
|
| Kowal, John |
Overview of the Orion Thermal Protection System |
|
| Kulczycki, Eric A. |
Technology Development for Long Duration Mid-Cloud Level Venus Balloon |
|
| La Gloria, N. |
Aerobot Autonomous Navigation And Mapping For Planetary Exploration |
|
| Lacroix, S. |
Fusion of Absolute Vision-based Localization and Visual Odometry for spacecraft pinpoint landing |
|
| Lange, C. |
Baseline design of a mobile asteroid surface scout (MASCOT) for the Hayabusa-2 mission |
|
| Le, Tuyet |
Planetary Probe Laser Propulsion Concept |
|
| Lebreton, Jean-Pierre |
Future Multi-Probe Missions to Titan and Enceladus |
|
| A fresh look at the Huygens Radar Altimeter Problem: New Results and Science Opportunities |
|
| The Europa Jupiter System Mission: A Pathfinder for Future Landings in the Jupiter System |
|
| Outlook for Probe and Lander Missions in ESA's Programmes |
|
| Lee, Steven |
Field Testing of the Mars Science Laboratory Terminal Descent Sensor |
|
| Lorenz, Ralph |
Penetrators are not a Panacea : A Critical Review and Remarks on Application to the Outer Solar System |
|
| Performance of Radioisotope Power Systems at Titan Surface Conditions : A Simple Model |
|
| Attitude and Angular Rates of Probes during Atmospheric Descent : Implications for Imaging |
|
| Titan Environment Models for Northern Polar Summer Exploration |
|
| Lorenzoni, L. |
Landing Site Targeting and Constraints for ExoMars 2016 Mission |
|
| Lunine, Jonathan |
Future Multi-Probe Missions to Titan and Enceladus |
|
| Lutz, T. |
Application of Auto-Rotation for Entry, Descent and Landing on Mars |
|
| Maahs, G. |
Development of a Lightweight, Energy Absorbing Soft-Landing System for Robotic Probes |
|
| Maddock, Robert |
Multi-mission Earth entry vehicle design trade space and concept development status |
|
| An Application of the Multi-Mission Earth Entry Vehicle: Galahad |
|
| Mahaffy, P. |
Investigating the origin and evolution of Venus with descent probe mass spectrometry |
|
| Manchester, Z.R. |
Microscale Atmospheric Reentry Sensors |
|
| Marr, Gregory |
Venus Mobile Explorer: A Mission Concept Study for the National Research Council Planetary Decadal Survey |
|
| Marvel, Kevin |
The Long Dry Season: Science Funding in the US |
|
| Matson, Dennis |
Future Multi-Probe Missions to Titan and Enceladus |
|
| Mazaheri, Alireza R. |
Multi-Species Subsonic Inlet Boundary Condition Formulation with RCS and SRP Applications |
|
| McCuistion, Doug |
NASA Overview |
|
| McNamara, Karen M. |
X—ray Computed Tomography Of The Stardust Heat Shield |
|
| Medlock, Kristin Gates |
Thermal Protection Tradeoffs for Ballute Versus Aeroshell Entry and Descent at Mars (Part II) |
|
| Mimoun, David |
Titan Organic Explorer : A One Kg UAV for Organic Compounds Search |
|
| Molera Calvés, Guifré |
Venus Express Spacecraft Observations With EVN Radio Telescopes |
|
| Munk, Michelle |
Overview of the NASA Entry, Descent, and Landing Systems Analysis |
|
| MSL EDL Instrumentation (MEDLI): From Instrumentation Concept to Flight Hardware |
|
| Murbach, Marcus |
Summary of the SOAREX 6 and 7 Flight Experiments |
|
| Atromos 2016: A Mars Companion Mission |
|
| Murri, D. |
Development plan for autonomous aerobraking |
|
| Papanastassiou, D. |
An Overview of the MoonRise Lunar Sample Return Mission from the South Pole-Aitken Basin |
|
| Pappalardo, B. |
The Europa Jupiter System Mission: A Pathfinder for Future Landings in the Jupiter System |
|
| Paris, S. |
Multiple pressure measurements on a planetary atmospheric entry vehicle for attitude determination |
|
| Evaluation of the Effects of Distributed Roughness: Induced Transition on the EXPERT Vehicle |
|
| Park, C. |
Stagnation Point Radiative Heat Fluxes in Neptune Aerobraking |
|
| Parreira, Baltasar |
Performance Assessment Of Vision Based Hazard Avoidance During Lunar And Martian Landing |
|
| Pauken, Michael T. |
Technology Development for Long Duration Mid-Cloud Level Venus Balloon |
|
| Effects of the Venus Atmosphere on the Behavior of Thermal Insulating Materials |
|
| Peacocke, Lisa |
Marco Polo: An asteroid sample returns to Earth |
|
| Perkinson, M-C. |
Marco Polo: An asteroid sample returns to Earth |
|
| Petkov, Mihail |
New insights to the Pioneer-Venus 12.5 km anomaly |
|
| Pham, B.V. |
Fusion of Absolute Vision-based Localization and Visual Odometry for spacecraft pinpoint landing |
|
| Pich, Maria de-Soria-Santacruz |
VELOONUS: A Computational Tool For Balloon Trajectories In Venus |
|
| Pirrotta, Simone |
Preliminary Study On A Novel Coring System For Planetary Surface Sampling |
|
| Ponnusamy, D. |
Development of a Lightweight, Energy Absorbing Soft-Landing System for Robotic Probes |
|
| Portigliotti, S. |
Landing Site Targeting and Constraints for ExoMars 2016 Mission |
|
| Prince, J. |
Development plan for autonomous aerobraking |
|
| Prockter, L. |
The Europa Jupiter System Mission: A Pathfinder for Future Landings in the Jupiter System |
|
| Radebaugh, Jani |
Measuring Outgassing And Impact Events From The Lunar Surface |
|
| Rafkin, Scot |
Impact Of Insertion Location On The Longevity Of A Mars Balloon |
|
| Ramus, Kevin |
Low Ballistic Coefficient Re-Entry Probe |
|
| Ratti, Francesco |
Technology package on-board EXPERT: the European Experimental Re-entry Test Bed |
|
| Reh, Kim |
Future Multi-Probe Missions to Titan and Enceladus |
|
| Renard, J-B. |
Detection of aerosols in planetary atmospheres using the new light aerosol counter LOAC |
|
| Requiston-Costantini, H. |
AEROFAST: AEROcapture for Future Space Transportation |
|
| Reuther, James |
Orion Thermal Protection Systems Advanced Development Project |
|
| Rivellini, T. |
Touchdown Systems Technology for Space Exploration |
|
| Roig, Bernat |
Flight Performance Envelope Of UAVs For In-Situ Science In Titan's Atmosphere |
|
| Sader, J. |
Blunted Cone Heatshields for Atmospheric Entry Vehicles |
|
| Said, M. |
Technology Development for Long Duration Mid-Cloud Level Venus Balloon |
|
| San-Martin, A. Miguel |
Mars Science Laboratory Entry, Descent and Landing System |
|
| The RCS Attitude Controller For the Exo-Atmospheric And Guided Entry Phases Of The Mars Science Laboratory |
|
| The Mars Science Laboratory Sky-Crane Landing Architecture: A Guidance, Navigation, and Control Perspective |
|
| Sánchez-Pérez, J.M. |
Marsnext Multiple Lander Targeting Trajectory Computation And Navigation |
|
| Sandy, C. |
Technology Development for Long Duration Mid-Cloud Level Venus Balloon |
|
| Schreck, Keith |
Planetary Probe Science Payload Mission Design Tool |
|
| Schwartzentruber, Thomas |
DSMC Solutions Of Hypersonic Flow Over A Planetary Probe Using Automated Adaptive Mesh Refinement And Cut-Cell Algorithms |
|
| Sell, S. |
Mars Science Laboratory SkyCrane New Technologies |
|
| MSL EDL Terminal Descent Strategy and Challenges |
|
| Senske, D. |
The Europa Jupiter System Mission: A Pathfinder for Future Landings in the Jupiter System |
|
| Silvestri, N. |
Characterizing Titan's Haze With A Balloon-Borne Spectropolarimeter |
|
| Smith, Brandon |
A Historical Review of Inflatable Aerodynamic Decelerator Technology Development |
|
| Solomonidou, Anezina |
Potentially Active Regions On Titan: Promising Landing Sites |
|
| Spilker, Tom |
Future Multi-Probe Missions to Titan and Enceladus |
|
| US Planetary Science Decadal Survey Study of Saturn Probe Missions |
|
| St. John Olcayto, Ender |
EAGLE: An Extensible, End-to-End Simulation and Evaluation Framework for Planetary EDLS |
|
| Stam, D.M. |
Characterizing Titan's Haze With A Balloon-Borne Spectropolarimeter |
|
| Steltzner, Adam |
Guidance and Accuracy Performance of Low Ballistic Number Vehicles at Earth and Mars |
|
| Mars Science Laboratory Entry, Descent and Landing System |
|
| Stiegler, Alexander |
Instrument capabilities of the HP3 Permittivity Probe |
|
| Striepe, Scott |
Autonomous Precision Landing and Hazard Avoidance Technology (ALHAT) Project Status as of May 2010 |
|
| Surzhikov, S. |
Aerothermodynamics Of Descent Space Vehicles At Strong Coupled Radiative-Gasdynamic Interaction |
|
| Svedhem, H. |
A fresh look at the Huygens Radar Altimeter Problem: New Results and Science Opportunities |
|
| Swanson, Greg |
Micrometeoroid and Orbital Debris Impact Damage Recording System |
|
| Tanner, C. |
Subsonic and Transonic Wind Tunnel Testing of Two Inflatable Aerodynamic Decelerators |
|
| Tauber, Michael |
Al Seiff: Thoughts About and Lessons from a Great Engineer |
|
| Taylor, Anthony |
The NASA MLAS Flight Demonstration – A Review of a Highly Successful Test |
|
| Theisinger, John |
A Methodology for Aerothermodynamic Shape Optimization of Hypersonic Entry Aeroshells |
|
| Titov, D. |
The Europa Jupiter System Mission: A Pathfinder for Future Landings in the Jupiter System |
|
| Tomasko, Marty |
Reflections on a Career in Planetary Science |
|
| Tompkins, Steven |
Venus Mobile Explorer: A Mission Concept Study for the National Research Council Planetary Decadal Survey |
|
| Trautner, Roland |
Data Compression of Science and Housekeeping Data for Planetary Probe Missions |
|
| A fresh look at the Huygens Radar Altimeter Problem: New Results and Science Opportunities |
|
| Trigo-Rodríguez, Josep M. |
Sample Return Missions From Comets And Primitive Bodies: A Future Landmark In Space Exploration |
|
| A simple instrument to in situ characterize the tensile strength of cometary materials |
|
| Trumble, Kerry |
Multi-mission Earth Entry Vehicle Aerodynamic and Aerothermal Analysis |
|
| Valverde, J.M. |
A simple instrument to in situ characterize the tensile strength of cometary materials |
|
| van Eekelen, Tom |
AEROFAST: Thermal/Ablation Analysis Of The Front Heat Shield For A Martian Aerocapture Mission |
|
| Vanoutryve, B. |
An Analysis of Illumination and Communication Conditions near Lunar South Pole based on Kaguya data |
|
| Vargas, Andre |
Future Multi-Probe Missions to Titan and Enceladus |
|
| Venkatapathy, Ethiraj |
Venus Mobile Explorer: A Mission Concept Study for the National Research Council Planetary Decadal Survey |
|
| An Assessment of the Thermal Protection System Technology for In-Situ Science Missions to Mars, Venus, Outer Planet and Sample Return to Earth |
|
| Vernis, Philippe |
AEROFAST Project: Aerocapture Guidance, Navigation and Control Design |
|
| Vijendran, Sanjay |
Technology Developments For European Mars Robotic Exploration Preparation |
|
| A Penetrator for the Jupiter Ganymede Orbiter Mission |
|
| Vitulli, R. |
Data Compression of Science and Housekeeping Data for Planetary Probe Missions |
|
| Volpe, R. |
Phoenix Mars Lander Robotic Arm Mission Operations |
|
| Vorontsov, V.A. |
The investigation of Venus by probes and balloons. The Russian mission Venera-D |
|
| Vrublevskis, John |
Using Technology And Techniques From Outside The Space Industry To Overcome Engineering Challenges Posed By Planetary Protection And Ultra-Clean Requirements On Flight Hardware |
|
| Walsh, Gerald J. |
Technology Development for Long Duration Mid-Cloud Level Venus Balloon |
|
| Wells, Grant |
Phoenix Location Determination Using HiRISE Imager |
|
| Westerholt, U. |
Application of Auto-Rotation for Entry, Descent and Landing on Mars |
|
| White, Todd |
Venus Mobile Explorer: A Mission Concept Study for the National Research Council Planetary Decadal Survey |
|
| Withers, P. |
Results from the Phoenix Atmospheric Structure Experiment |
|
| Witkowski, Allen |
Aerodynamic Decelerators For Modern Venus Probes/Landers |
|
| Wong, Edward C. |
The RCS Attitude Controller For the Exo-Atmospheric And Guided Entry Phases Of The Mars Science Laboratory |
|
| Wright, Michael |
Lunar Atmosphere And Dust Environment Explorer Integration And Test |
|