CubeSat evolution: Analyzing CubeSat capabilities for conducting science missions
暂无分享,去创建一个
[1] Brian J. Bauman,et al. Space-based telescopes for actionable refinement of ephemeris pathfinder mission , 2011 .
[2] Cordell Grant,et al. On-Orbit Performance of the Bright Target Explorer (BRITE) Nanosatellite Astronomy Constellation , 2014 .
[3] P. Gurfil,et al. The SAMSON Project – Cluster Flight and Geolocation with Three Autonomous Nano-satellites , 2012 .
[4] Takashi Eishima,et al. WNISAT - Nanosatellite for North Arctic Routes and Atmosphere Monitoring , 2010 .
[5] Jian Guo,et al. Survey of worldwide pico- and nanosatellite missions, distributions and subsystem technology , 2010 .
[6] William Good,et al. CIRiS: Compact Infrared Radiometer in Space , 2016, Optical Engineering + Applications.
[7] E. Glenn Lightsey,et al. In-situ sub-millimeter space debris detection using cubesats , 2012 .
[8] Lyle Abramowitz,et al. SENSE: Lessons Learned through Acquisition and On-Orbit Operations , 2015 .
[9] Cordell Grant,et al. Canadian Advanced Nanospace Experiment 2: On-Orbit Experiences with a Three-Kilogram Satellite , 2008 .
[10] Todd S. Rose,et al. The NASA Optical Communication and Sensors Demonstration Program: Preflight Up-date , 2015 .
[11] S. Kenyon,et al. STRaND-1: The world's first smartphone nanosatellite , 2011, 2011 2nd International Conference on Space Technology.
[12] Bret Bronner,et al. Developing the Minature Tether Elecrodynamics Experiment: Completion of Key Milestones and Future Work , 2015 .
[13] Christopher Beasley,et al. Small Class-D spacecraft thermal design, test and analysis - PharmaSat biological experiment , 2009, 2009 IEEE Aerospace conference.
[14] Owen Brown,et al. Fractionated Space Architectures: A Vision for Responsive Space , 2006 .
[15] Sara Spangelo,et al. Initial Flight Assessment of the Radio Aurora Explorer , 2011 .
[16] James R. Wertz,et al. Spacecraft attitude determination and control , 1978 .
[17] Marcello Rodriguez,et al. A Compact Ion and Neutral Mass Spectrometer for CubeSat/SmallSat Platforms , 2015 .
[18] A. Zajczyk,et al. HaloSat: A CubeSat to Study the Hot Galactic Halo , 2019, The Astrophysical Journal.
[19] S. Lee,et al. The CubeSat Approach to Space Access , 2008, 2008 IEEE Aerospace Conference.
[20] Phillip Putman,et al. Cryogenic Thermal Management for CryoCube-1 , 2015 .
[21] Michael S. Briggs,et al. TRYAD: a Pair of CubeSats to Measure Terrestrial Gamma-ray Flash Beams , 2015 .
[22] Nicholas L. Johnson,et al. The new NASA orbital debris mitigation procedural requirements and standards , 2010 .
[23] Ziad S. Haddad,et al. Raincube: A proposed constellation of precipitation profiling radars in CubeSat , 2014, 2015 IEEE International Geoscience and Remote Sensing Symposium (IGARSS).
[24] James Mason,et al. Results from the Planet Labs Flock Constellation , 2014 .
[25] G. Crowley,et al. Scintillation Observations and Response of The Ionosphere to Electrodynamics (SORTIE) , 2015 .
[26] Stergios J. Papadakis,et al. The Radiometer Assessment using Vertically Aligned Nanotubes (RAVAN) CubeSat Mission: A Pathfinder for a New Measurement of Earth's Radiation Budget , 2016 .
[27] Lyle Abramowitz,et al. SENSE: The USAF SMC/XR NanoSatellite Program for Space Environmental Monitoring , 2013 .
[28] Riki Munakata,et al. LightSail Program Status: One Down, One to Go , 2015 .
[29] Scott Palo,et al. Design and scientific return of a miniaturized particle telescope onboard the Colorado Student Space Weather Experiment (CSSWE) CubeSat , 2014, 2014 IEEE Aerospace Conference.
[30] Jordi Puig-Suari,et al. CubeSat: The Development and Launch Support Infrastructure for Eighteen Different Satellite Customers on One Launch , 2001 .
[31] Fernando H. Aguirre. X-Band electronics for the INSPIRE Cubesat deep space radio , 2015, 2015 IEEE Aerospace Conference.
[32] Berke Durak,et al. Global Monitoring of Greenhouse Gas Emissions , 2016 .
[33] Saptarshi Bandyopadhyay,et al. Review of Formation Flying and Constellation Missions Using Nanosatellites , 2016 .
[34] Daniel Selva,et al. A CubeSat catalog design tool for a multi-agent architecture development framework , 2015, 2015 IEEE Aerospace Conference.
[35] David J. Korsmeyer,et al. A Review of NASA Ames CubeSat Program , 2015 .
[36] Marco Villa,et al. CubeSat based Rendezvous, Proximity Operations, and Docking in the CPOD Mission , 2015 .
[37] Juergen Mueller,et al. Survey of Propulsion Technologies Applicable to Cubesats , 2010 .
[38] Shuanggen Jin,et al. GNSS Reflectometry and Remote Sensing: New Objectives and Results , 2010, 1010.2281.
[39] Iain Cartwright. Structural Stability Assessment of the High Frequency Antenna for Use on the Buccaneer CubeSat in Low Earth Orbit , 2014 .
[40] Jennifer Harbaugh. LunaH-Map: University-Built CubeSat to Map Water-Ice on the Moon , 2016 .
[41] Charles Merrill Swenson,et al. Hyperspectral Limb Scanner for the OPAL Mission , 2014 .
[42] Jeff Cain,et al. Nanosatellite Tracking Ships: From Concept To Launch In 7 Months , 2009 .
[43] H. Bahcivan,et al. Ionospheric Scintillation Explorer (ISX) , 2015 .
[44] Paula J. Pingree,et al. The COVE Payload - A Reconfigurable FPGA-Based Processor for CubeSats , 2011 .
[45] James Mason,et al. MinXSS CubeSat On-Orbit Performance and the First Flight of the Blue Canyon Technologies XACT 3- axis ADCS , 2016 .
[46] Fausto Spoto,et al. The Envisat satellite and its integration , 2001 .
[47] Joseph Lukas,et al. Thruster Subsystem Design for the Ballistic Reinforced Communication Satellite (BRICSat-P) , 2014 .
[48] Adriano Camps,et al. 3Cat-2—An Experimental Nanosatellite for GNSS-R Earth Observation: Mission Concept and Analysis , 2016, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[49] Kyle Colton,et al. Supporting the Flock: Building a Ground Station Network for Autonomy and Reliability , 2016 .
[50] Raul Onrubia Ibáñez,et al. Precision Bounds in GNSS-R Ocean Altimetry , 2014, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[51] Robert Twiggs,et al. An Advanced Standard for CubeSats , 2011 .
[52] James B. Abshire,et al. A linear mode photon-counting (LMPC) detector array in a CubeSat to enable earth science LiDAR measurements , 2015, 2015 IEEE International Geoscience and Remote Sensing Symposium (IGARSS).
[53] Eric Teegarden,et al. Aeneas -- Colony I Meets Three-Axis Pointing , 2011 .
[54] Bradley Zavodsky,et al. First Time-Resolved Observations of Precipitation Structure and Storm Intensity with a Constellation of Smallsats (TROPICS) Mission Applications Workshop Summary Report , 2017 .
[55] Jim Wilson. New CubeSats To Test Earth Science Tech in Space , 2016 .
[56] Neerav Shah. Canyval-x: Cubesat Astronomy by NASA and Yonsei Using Virtual Telescope Alignment Experiment , 2016 .
[57] Austin Williams,et al. CubeSat Proximity Operations Demonstration Avionics System Design , 2015 .
[58] Thomas H. Zurbuchen,et al. Achieving Science with CubeSats: Thinking Inside the Box , 2016 .
[59] Giulio Manzoni,et al. Cubesat Micropropulsion Characterization in Low Earth Orbit , 2015 .
[60] Daniel Hegel. FlexCore: Low-Cost Attitude Determination and Control Enabling High-Performance Small Spacecraft , 2016 .
[61] Alessandro Golkar,et al. The Federated Satellite Systems paradigm: Concept and business case evaluation , 2015 .
[62] Eberhard Gill,et al. In-orbit results of Delfi-n3Xt: Lessons learned and move forward , 2016 .
[63] Dean C. Alhorn,et al. NanoSail-D: The Small Satellite That Could! , 2011 .
[64] Bill Blackwell,et al. New Small Satellite Capabilities for Microwave Atmoshperic Remote Sensing: The Earth Observing Nanosatellite-Microwave , 2015 .
[65] D. Gerhardt,et al. The Colorado Student Space Weather Experiment (CSSWE) On-Orbit Performance , 2013 .
[66] Janise McNair,et al. A Survey of Communication Sub-systems for Intersatellite Linked Systems and CubeSat Missions , 2012, J. Commun..
[67] David Krejci,et al. A survey and assessment of the capabilities of Cubesats for Earth observation , 2012 .
[68] Erin Mahoney. NASA Announces Seventh Round of Candidates for CubeSat Space Missions , 2016 .
[69] Owen Brown,et al. The Value Proposition for Fractionated Space Architectures , 2006 .
[70] E. Buchen. Small Satellite Market Observations , 2015 .
[71] J. G. Sample,et al. CINEMA (Cubesat for Ion, Neutral, Electron, MAgnetic fields) , 2009 .
[72] Thomas N. Woods,et al. Miniature X-Ray Solar Spectrometer: A Science-Oriented, University 3U CubeSat , 2016 .
[73] Edward A. S. Hanlon,et al. AMODS: Autonomous mobile on-orbit diagnostic system , 2016, 2016 IEEE Aerospace Conference.
[74] Erin Mahoney. NASA Selects Lockheed Martin’s LunIR for Artemis I Secondary Payload , 2016 .
[75] Gary R. Swenson,et al. LAICE CubeSat mission for gravity wave studies , 2015 .
[76] Craig Underwood,et al. Using CubeSat/micro-satellite technology to demonstrate the Autonomous Assembly of a Reconfigurable Space Telescope (AAReST) , 2015 .
[77] Peter Platzer,et al. Smaller Satellites, Smarter Forecasts: GPS-RO Goes Mainstream , 2015 .
[78] Hani Kamhawi,et al. The Iodine Satellite (iSat) Project Development Towards Critical Design Review , 2015 .
[79] Mason A. Peck,et al. Dual exploration architectures for breaking the decades-long cycles of planetary science , 2016, 2016 IEEE Aerospace Conference.
[80] Andrew W. Stephan,et al. WINCS on-orbit performance results , 2015, SPIE Optical Engineering + Applications.