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High Data Rates for AubieSat-2 A & B, Two CubeSats Performing High Energy Science in the Upper AtmosphereThis paper will discuss a proposed CubeSat size (3 Units / 6 Units) telemetry system concept being developed at Marshall Space Flight Center (MSFC) in cooperation with Auburn University. The telemetry system incorporates efficient, high-bandwidth communications by developing flight-ready, low-cost, PROTOFLIGHT software defined radio (SDR) payload for use on CubeSats. The current telemetry system is slightly larger in dimension of footprint than required to fit within a 0.75 Unit CubeSat volume. Extensible and modular communications for CubeSat technologies will provide high data rates for science experiments performed by two CubeSats flying in formation in Low Earth Orbit. The project is a collaboration between the University of Alabama in Huntsville and Auburn University to study high energy phenomena in the upper atmosphere. Higher bandwidth capacity will enable high-volume, low error-rate data transfer to and from the CubeSats, while also providing additional bandwidth and error correction margin to accommodate more complex encryption algorithms and higher user volume.
Document ID
20150022353
Acquisition Source
Marshall Space Flight Center
Document Type
Abstract
Authors
Sims, William H.
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Date Acquired
December 7, 2015
Publication Date
November 9, 2015
Subject Category
Geophysics
Physics Of Elementary Particles And Fields
Report/Patent Number
M15-4700
Report Number: M15-4700
Meeting Information
Meeting: Reinventing Space Conference and Exhibition
Location: Oxford
Country: United Kingdom
Start Date: November 9, 2015
End Date: November 13, 2015
Sponsors: Harvard Univ., Satellite Applications Catapult, Aerospace Corp., British Interplanetary Society, Science and Technology Facilities Council (STFC), Rutherford Appleton Lab.
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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