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Influence of number of measured states on accuracy and robustness of flight control system

机译:测量状态数量对飞行控制系统的准确性和鲁棒性的影响

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Recently in many countries the efforts of researchers are directed to the design of low cost, accurate and robust controllers for small Unmanned Aerial Vehicle (UAV) using the minimum number of on-board sensors. The basic problem of such kind of design is to restore the unknown (unmeasured) states. The approach proposed in the paper consists of two procedures: state restoration by the reduced-order observer (Luenberger filter) and optimal deterministic controller design. This technique was applied to the “benchmark” model of UAV longitudinal motion (there were considered two cases: with three and two on-board sensors only) and results of its application are presented.
机译:最近在许多国家,研究人员的努力是使用最小车载传感器的小无人机(UAV)设计低成本,准确和坚固的控制器的设计。这种设计的基本问题是恢复未知(未测量)状态。本文提出的方法包括两个程序:通过缩小秩序观察者(Luenberger过滤器)和最佳确定性控制器设计状态恢复。这种技术应用于UAV纵向运动的“基准”模型(认为两种情况:仅限两个和两个板载传感器),并提出了其应用的结果。

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