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Reconfigurable, Intelligently-Adaptive, Communication System SDR Platform
Author(s) -
Rigoberto Roche,
MaryJo Shalkhouser,
Joseph Hickey,
Janette C. Briones
Publication year - 2016
Publication title -
24th aiaa international communications satellite systems conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2016-5718
Subject(s) - computer science , computer architecture , embedded system
The Space Telecommunications Radio System (STRS) provides a common, consistent framework to abstract the application software from the radio platform hardware. STRS aims to reduce the cost and risk of using complex, configurable and reprogrammable radio systems across NASA missions. The Glenn Research Center (GRC) team made a software-defined radio (SDR) platform STRS compliant by adding an STRS operating environment and a field programmable gate array (FPGA) wrapper, capable of implementing each of the platforms interfaces, as well as a test waveform to exercise those interfaces. This effort serves to provide a framework toward waveform development on an STRS compliant platform to support future space communication systems for advanced exploration missions. Validated STRS compliant applications provided tested code with extensive documentation to potentially reduce risk, cost and efforts in development of space-deployable SDRs. This paper discusses the advantages of STRS, the integration of STRS onto a Reconfigurable, Intelligently-Adaptive, Communication System (RIACS) SDR platform, the sample waveform, and wrapper development efforts. The paper emphasizes the infusion of the STRS Architecture onto the RIACS platform for potential use in next generation SDRs for advance exploration missions.

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