DocumentCode
2907590
Title
Adaptation of the Electra radio to support multiple receive channels
Author
Satorius, Edgar H. ; Shah, Biren N. ; Bruvold, Kristoffer N. ; Bell, David J.
Author_Institution
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
fYear
2011
fDate
5-12 March 2011
Firstpage
1
Lastpage
10
Abstract
Proposed future Mars missions plan communication between multiple assets (rovers). This paper presents the results of a study carried out to assess the potential adaptation of a proximity link relay radio (i.e., the Electra radio) to a multi-channel transceiver. The basic concept is a Frequency Division multiplexing (FDM) communications scheme wherein different receiver architectures are examined. Options considered include: (1) multiple IF slices, A/D and FPGAs each programmed with an Electra baseband modem; (2) common IF but multiple A/Ds and FPGAs and (3) common IF, single A/D and single or multiple FPGAs programmed to accommodate the FDM signals. These options represent the usual tradeoff between analog and digital complexity. Given the space application, a common IF is preferable; however, multiple users present dynamic range challenges (e.g., near-far constraints) that would favor multiple IF slices (Option 1). Vice versa, with a common IF and multiple A/Ds (Option 2), individual AGC control of the A/Ds would be an important consideration. Option 3 would require a common AGC control strategy and would entail multiple digital down conversion paths within the FPGA. In this paper, both FDM parameters as well as the different Electra design options will be examined. In particular, signal channel spacing as a function of user data rates and transmit powers will be evaluated. In addition, tradeoffs between the different Electra design options will be presented with the ultimate goal of defining an augmented Electra radio architecture for potential future missions.
Keywords
channel spacing; field programmable gate arrays; frequency division multiplexing; transceivers; AGC control; FDM communication scheme; FDM signal; FPGA; Mars missions plan communication; analog complexity; digital complexity; electra radio; frequency division multiplexing communication scheme; multichannel transceiver; proximity link relay radio; signal channel spacing; Automatic generation control; Band pass filters; Frequency division multiplexing; Gain; Gain control; Transceivers;
fLanguage
English
Publisher
ieee
Conference_Titel
Aerospace Conference, 2011 IEEE
Conference_Location
Big Sky, MT
ISSN
1095-323X
Print_ISBN
978-1-4244-7350-2
Type
conf
DOI
10.1109/AERO.2011.5747341
Filename
5747341
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