Attitude determination and control system (ADCS) for X-SAT
The project started with the formulation of the requirements for the mission and deriving the system parameters for ADCS (Attitude Determination and Control System Design). These were reviewed by the experts committee. As the star sensor is the crucial attitude sensor, a thorough investigation for t...
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sg-ntu-dr.10356-29072023-03-04T03:23:59Z Attitude determination and control system (ADCS) for X-SAT Nagarajan, Narayanaswamy School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Control and instrumentation The project started with the formulation of the requirements for the mission and deriving the system parameters for ADCS (Attitude Determination and Control System Design). These were reviewed by the experts committee. As the star sensor is the crucial attitude sensor, a thorough investigation for the mounting of the sensor was carried out considering the possible motion of sun and earth with reference to the body frame under all control modes. Besides the star sensor which is required to support the primary imaging payload, other factors which influence the control requirements of the bus are the X-band subsystem and the ADAM payload of X-SAT. Hence the tradeoff studies leading to the design of these systems are also supported by this project. The outcome of the mounting angle analysis of the star tracker and the trade-off studies of the X-band subsystem and the ADAM payload have fully contributed to the final design of ADCS. 2008-09-17T09:16:55Z 2008-09-17T09:16:55Z 2004 2004 Research Report http://hdl.handle.net/10356/2907 Nanyang Technological University application/pdf |
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DRNTU::Engineering::Electrical and electronic engineering::Control and instrumentation Nagarajan, Narayanaswamy Attitude determination and control system (ADCS) for X-SAT |
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The project started with the formulation of the requirements for the mission and deriving the system parameters for ADCS (Attitude Determination and Control System Design). These were reviewed by the experts committee. As the star sensor is the crucial attitude sensor, a thorough investigation for the mounting of the sensor was carried out considering the possible motion of sun and earth with reference to the body frame under all control modes. Besides the star sensor which is required to support the primary imaging payload, other factors which influence the control requirements of the bus are the X-band subsystem and the ADAM payload of X-SAT. Hence the tradeoff studies leading to the design of these systems are also supported by this project. The outcome of the mounting angle analysis of the star tracker and the trade-off studies of the X-band subsystem and the ADAM payload have fully contributed to the final design of ADCS. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Nagarajan, Narayanaswamy |
format |
Research Report |
author |
Nagarajan, Narayanaswamy |
author_sort |
Nagarajan, Narayanaswamy |
title |
Attitude determination and control system (ADCS) for X-SAT |
title_short |
Attitude determination and control system (ADCS) for X-SAT |
title_full |
Attitude determination and control system (ADCS) for X-SAT |
title_fullStr |
Attitude determination and control system (ADCS) for X-SAT |
title_full_unstemmed |
Attitude determination and control system (ADCS) for X-SAT |
title_sort |
attitude determination and control system (adcs) for x-sat |
publishDate |
2008 |
url |
http://hdl.handle.net/10356/2907 |
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1759857199485550592 |