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首页> 外文期刊>Progress in Aerospace Sciences >A survey on active magnetic attitude control algorithms for small satellites
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A survey on active magnetic attitude control algorithms for small satellites

机译:小型卫星主动磁姿态控制算法研究

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Control algorithms for the active magnetic attitude control systems are covered in the survey. Three different situations in the magnetic system implementation are considered. First, angular velocity damping is covered. Second part is devoted to the combined operation of the active magnetic system with other actuators and with the help of some passive stabilization concepts. Magnetic control torque is restricted in its direction, as it cannot be implemented along the geomagnetic induction vector. This restriction may be lifted by enhancing the active magnetic attitude control with other actuators and concepts. This comes at the cost of restrictions on the available attitude modes of the satellites. Namely, passive gravity-gradient stabilization provides the nadir pointing; bias momentum satellites are restricted by the wheel axis pointing along the orbital normal; spin stabilized satellites acquire only one axis attitude. Finally, solely three-axis magnetic attitude control is considered. Different approaches to the control torque restriction problem are covered, with distinction between the local feedback laws and optimization methods. The survey does not cover passive magnetic control concepts and auxiliary role in the reaction wheels momentum unload. Comparison of the covered algorithms is provided to highlight the authors' opinion on the algorithms modern implementation and further research directions.
机译:有源电磁姿态控制系统的控制算法涵盖在调查中。考虑了磁性系统实施中的三种不同情况。首先,介绍了角速度阻尼。第二部分致力于有源磁系统与其他执行器的组合操作,并借助一些被动稳定概念。磁控制转矩在其方向上受到限制,因为它不能沿着地磁感应矢量实现。通过使用其他执行器和概念增强主动磁姿态控制,可以解除这种限制。这是以限制卫星的可用姿态模式为代价的。即,被动重力梯度稳定提供了最低点。偏角动量卫星受到沿轨道法线指向的轮轴的限制;自旋稳定的卫星仅获得一个轴姿态。最后,仅考虑三轴磁性姿态控制。涵盖了控制转矩限制问题的不同方法,并区分了局部反馈定律和优化方法。该调查未涵盖被动磁控制概念以及反作用轮动量卸载中的辅助作用。通过比较所涵盖的算法,可以突出作者对算法现代实现的看法以及进一步的研究方向。

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