DocumentCode :
246691
Title :
Design of a cubesat computer architecture using COTS hardware for terrestrial thermal imaging
Author :
Nagarajan, Chandrasekhar ; D´souza, Rodney Gracian ; Karumuri, Sukumar ; Kinger, Krishna
Author_Institution :
Parikshit Student Satellite Team, Manipal Inst. of Technol., Manipal, India
fYear :
2014
fDate :
13-14 Nov. 2014
Firstpage :
67
Lastpage :
76
Abstract :
CubeSats are standardized artificial nano satellites which weigh between 1 and 15kg and serve the purpose of space research. A handful of cubesats have proved their worth to the world with their payloads based on terrestrial monitoring. The so-called remote sensing cubesats have revolutionized the platform for different scientific observations that include weather forecast, cyclone warning systems, visible and thermal terrestrial imaging, sea surface temperature monitoring, forest fire detection and so on. An onboard computer (OBC) acts like the brain of any satellite. This system is expected to perform multifarious activities by monitoring and controlling every function of the satellite. In this paper, we discuss the design of a dual processor based onboard computer system built solely on commercially-off the-shelf (COTS) components. The design technologies for large commercial satellites cannot be directly used for the nano satellite due to the compactness of OBC. This paper will cover the functionality of a satellite OBC and detail how COTS hardware supports the activities. Focus will be mainly given to the payload electronics which is a thermal imaging system with capability of real time autonomous cloud monitoring. The system is designed by taking into account, the low power availability in nano satellite missions. A dual controller based system is designed and various aspects of the component interfacing are also shown.
Keywords :
aerospace instrumentation; artificial satellites; computer architecture; image coding; image enhancement; image segmentation; infrared imaging; microcontrollers; remote sensing; COTS components; COTS hardware; OBC; commercially-off the-shelf components; component interfacing; cubesat computer architecture; cyclone warning systems; dual controller based system; dual processor based onboard computer system; forest fire detection; image compression; image enhancement; image segmentation; onboard computer; payload electronics; real time autonomous cloud monitoring; remote sensing cubesats; sea surface temperature monitoring; space research; standardized artificial nanosatellites; terrestrial monitoring; thermal terrestrial imaging; visible terrestrial imaging; weather forecast; Cameras; Payloads; Satellite broadcasting; Satellites; Sun; Temperature sensors; Artificial satellites; Command and control systems; Computer Architecture; Image classification; Image segmentation; Low earth orbit satellites; Object detection;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Aerospace Electronics and Remote Sensing Technology (ICARES), 2014 IEEE International Conference on
Conference_Location :
Yogyakarta
Print_ISBN :
978-1-4799-6187-0
Type :
conf
DOI :
10.1109/ICARES.2014.7024379
Filename :
7024379
Link To Document :
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