In-orbit attitude actuation using solar panels
A specific technique is developed to wield the internal disturbance torque caused by the solar panel actuation for spacecraft attitude control tasks. This work is the maiden work towards integrating the attitude control and the solar tracking tasks, forming a combined attitude and solar tracking sys...
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2008
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my.upm.eprints.152412016-04-07T04:29:55Z http://psasir.upm.edu.my/id/eprint/15241/ In-orbit attitude actuation using solar panels Varatharajoo, Renuganth Tan, Mei San A specific technique is developed to wield the internal disturbance torque caused by the solar panel actuation for spacecraft attitude control tasks. This work is the maiden work towards integrating the attitude control and the solar tracking tasks, forming a combined attitude and solar tracking system. The feasibility of this concept for spacecraft is proven and eventually the combined concept is validated. A technical proof is presented corresponding to the end-to-end system demonstration. The investigation starts with the determination of the solar tracking constraints. Then, the mathematical models describing the attitude and solar tracking are established, and eventually the onboard architecture is implemented. The numerical treatments using Matlab™ were performed to evaluate the developed onboard architecture. The simulation results are discussed especially from the attitude control standpoint. The integrated system complies very well with the reference mission requirements. Multi-Science Publishing 2008-07 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/15241/1/In-orbit%20attitude%20actuation%20using%20solar%20panels.pdf Varatharajoo, Renuganth and Tan, Mei San (2008) In-orbit attitude actuation using solar panels. The International Journal of Multiphysics, 2 (2). pp. 147-154. ISSN 1750-9548; ESSN: 2048-3961 http://multi-science.atypon.com/doi/abs/10.1260/175095408785416956 10.1260/175095408785416956 |
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A specific technique is developed to wield the internal disturbance torque caused by the solar panel actuation for spacecraft attitude control tasks. This work is the maiden work towards integrating the attitude control and the solar tracking tasks, forming a combined attitude and solar tracking system. The feasibility of this concept for spacecraft is proven and eventually the combined concept is validated. A technical proof is presented corresponding to the end-to-end system demonstration. The investigation starts with the determination of the solar tracking constraints. Then, the mathematical models describing the attitude and solar tracking are established, and eventually the onboard architecture is implemented. The numerical treatments using Matlab™ were performed to evaluate the developed onboard architecture. The simulation results are discussed especially from the attitude control standpoint. The integrated system complies very well with the reference mission requirements. |
format |
Article |
author |
Varatharajoo, Renuganth Tan, Mei San |
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Varatharajoo, Renuganth Tan, Mei San In-orbit attitude actuation using solar panels |
author_facet |
Varatharajoo, Renuganth Tan, Mei San |
author_sort |
Varatharajoo, Renuganth |
title |
In-orbit attitude actuation using solar panels |
title_short |
In-orbit attitude actuation using solar panels |
title_full |
In-orbit attitude actuation using solar panels |
title_fullStr |
In-orbit attitude actuation using solar panels |
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In-orbit attitude actuation using solar panels |
title_sort |
in-orbit attitude actuation using solar panels |
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Multi-Science Publishing |
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2008 |
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http://psasir.upm.edu.my/id/eprint/15241/1/In-orbit%20attitude%20actuation%20using%20solar%20panels.pdf http://psasir.upm.edu.my/id/eprint/15241/ http://multi-science.atypon.com/doi/abs/10.1260/175095408785416956 |
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