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Robust adaptive magnetic control of satellites with uncertain parameters * * This research is supported by CNES Centre National d’Etudes Spatiales and région Midi-Pyrénées.

机译:参数不确定的卫星的鲁棒自适应磁控制 * * 此研究得到了CNES Center National d'Etudes Spatiales和Midi地区的支持-比利牛斯山脉

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摘要

Recently developed results for direct adaptive control design in the context of uncertain systems in descriptor form are discussed and applied to a satellite attitude control problem. Thanks to descriptor model handling the methodology allows to address with convexity arguments uncertainties on the inertia matrix. The design of the adaptive law is done with semi-definite programming tools (LMI solvers) and is applicable with the sole knowledge of a controller stabilizing the nominal system (no passivity assumptions). The tackled satellite model is linear (assuming small pointing errors), full 3D rotations are considered (axes are coupled), and mixed reaction wheel and magnetotorquer actuation is adopted. Compared to the provided initial LTI control law, adaptive control increases robustness margins by a factor 262%.
机译:讨论了在不确定系统中以描述符形式存在的直接自适应控制设计的最新成果,并将其应用于卫星姿态控制问题。由于描述符模型的处理,该方法允许使用凸参数解决惯性矩阵上的不确定性。自适应定律的设计是使用半定性编程工具(LMI求解器)完成的,并且仅在稳定标称系统的控制器(无被动假设)的情况下适用。所处理的卫星模型是线性的(假设指向误差较小),考虑了3D完整旋转(耦合了轴),并且采用了混合反作用轮和磁转矩致动器。与提供的初始LTI控制定律相比,自适应控制将鲁棒性裕度提高了262%。

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