首页> 外文会议>AAS/AIAA Space Flight Mechanics Meeting; 20070128-0201; Sedona,AZ(US) >PLACING THE REPETITIVE CONTROLLER INSIDE OR OUTSIDE THE FEEDBACK LOOP: SIMULTANEOUSLY ACHIEVING THE FEEDBACK AND REPETITIVE CONTROL OBJECTIVES
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PLACING THE REPETITIVE CONTROLLER INSIDE OR OUTSIDE THE FEEDBACK LOOP: SIMULTANEOUSLY ACHIEVING THE FEEDBACK AND REPETITIVE CONTROL OBJECTIVES

机译:将重复性控制器放置在反馈环内部或外部:同时实现反馈和重复性控制目标

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Spacecraft often have internal moving parts such as control moment gyros or reaction wheels. Slight imbalance in such equipment sets up vibrations in the spacecraft that can compromise the performance of any fine pointing equipment on board. Repetitive control (RC) is a relatively new field that creates control systems that can be used on active isolation mounts with the aim of eliminating the influence of periodic disturbance sources. In certain applications, one wants not only to meet this objective, but also to perform some unrelated tracking maneuver. This paper is devoted to presenting methods of using RC to accomplish both objectives. It is shown that when the repetitive controller is used to adjust the command to a feedback control system, the feedback properties in response to commands of arbitrary frequency content are not normally preserved. They can be preserved if one uses the RC inside the feedback control loop, uses a small RC gain, and uses RC designed using frequency response based optimization methods. Also, with some modification of the structure one can accomplish the same objective outside the loop using the same RC algorithm. The approach is seen to decouple the design objectives, allowing one to design the feedback system for the tracking purpose without considering the periodic disturbances, and design the RC without concern for tracking.
机译:航天器通常具有内部运动部件,例如控制力矩陀螺仪或反作用轮。这种设备的轻微不平衡会在航天器中引起振动,从而可能损害机上任何精细指向设备的性能。重复控制(RC)是一个相对较新的领域,它创建了可用于有源隔离安装架的控制系统,目的是消除周期性干扰源的影响。在某些应用中,人们不仅希望满足这一目标,而且还希望执行一些无关的跟踪操作。本文致力于介绍使用RC来实现这两个目标的方法。结果表明,当使用重复控制器将命令调整到反馈控制系统时,通常不会保留响应于任意频率内容的命令的反馈属性。如果在反馈控制环路内使用RC,使用小的RC增益并使用通过基于频率响应的优化方法设计的RC,则可以保留它们。而且,通过对结构进行一些修改,可以使用相同的RC算法在循环外部完成相同的目标。可以看出,这种方法可以使设计目标脱钩,从而可以在不考虑周期性干扰的情况下为跟踪目的设计反馈系统,而无需考虑跟踪就可以设计RC。

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