DocumentCode :
1939346
Title :
Avionics of the Cyclone Global Navigation Satellite System (CYGNSS) microsat constellation
Author :
Dickinson, John R. ; Alvarez, Jennifer L. ; Rose, Randall J. ; Ruf, Christopher S. ; Walls, Buddy J.
Author_Institution :
Southwest Research Institute, 6220 Culebra Rd, San Antonio, TX 78238 USA
fYear :
2013
fDate :
2-9 March 2013
Firstpage :
1
Lastpage :
9
Abstract :
The Cyclone Global Navigation Satellite System (CYGNSS), which was recently selected as the Earth Venture-2 investigation by NASA´s Earth Science System Pathfinder (ESSP) Program, measures the ocean surface wind field with unprecedented temporal resolution and spatial coverage, under all precipitating conditions, and over the full dynamic range of wind speeds experienced in a tropical cyclone (TC). The CYGNSS flight segment consists of 8 microsatellite-class observatories, which represent SwRI´s first spacecraft bus design, installed on a Deployment Module for launch. They are identical in design but provide their own individual contribution to the CYGNSS science data set. Subsystems include the Attitude Determination and Control System (ADCS), the Communication and Data Subsystem (CDS), the Electrical Power Supply (EPS), and the Structure, Mechanisms, and Thermal Subsystem (SMT). This paper will present an overview of the mission and the avionics, including the ADCS, CDS, and EPS, in detail. Specifically, we will detail how off-the-shelf components can be utilized to do ADCS and will highlight how SwRI´s existing avionics solutions will be adapted to meet the requirements and cost constraints of microsat applications. Avionics electronics provided by SwRI include a command and data handling computer, a transceiver radio, a low voltage power supply (LVPS), and a peak power tracker (PPT).
Keywords :
Aerospace electronics; Batteries; Global Positioning System; Low voltage; Sea measurements; Sea surface;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Aerospace Conference, 2013 IEEE
Conference_Location :
Big Sky, MT
ISSN :
1095-323X
Print_ISBN :
978-1-4673-1812-9
Type :
conf
DOI :
10.1109/AERO.2013.6497344
Filename :
6497344
Link To Document :
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