Université Blida 1

Attitude Stabilization of a CubeSat Using Fuzzy Logic Controller

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dc.contributor.author Hawasli, Zakaria ;
dc.contributor.author Mehidid, Abdel Wahab
dc.date.accessioned 2025-09-24T12:46:05Z
dc.date.available 2025-09-24T12:46:05Z
dc.date.issued 2025
dc.identifier.uri https://di.univ-blida.dz/jspui/handle/123456789/40476
dc.description 008/2025 option: CNS/ATM fr_FR
dc.description.abstract This thesis focuses on the attitude stabilization of a 2U CubeSat in low Earth orbit. After deployment, the satellite undergoes uncontrolled tumbling due to separation forces. To mitigate this, a B-dot controller using magnetorquers is applied during the detumbling phase. The results confirm the effectiveness of this approach in reducing angular velocities and preparing the satellite for precise control. Following detumbling, two attitude control strategies are compared: a classical PID controller and a Fuzzy Logic Controller (FLC). Simulation results show that while the PID controller offers acceptable performance, it is limited by overshoot and long settling times. In contrast, the FLC demonstrates faster response, lower overshoot, and higher robustness against disturbances and nonlinear dynamics. This work highlights the potential of fuzzy logic-based control for small satellites, providing a reliable, energy-efficient, and adaptive solution for precise attitude regulation. fr_FR
dc.language.iso en fr_FR
dc.publisher blida01 fr_FR
dc.title Attitude Stabilization of a CubeSat Using Fuzzy Logic Controller fr_FR
dc.type Thesis fr_FR


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