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Input Allocation for Partially-Identified Redundant Control and Its Application to Precision Motion Systems

机译:部分识别的冗余控制的输入分配及其在精密运动系统中的应用

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System identification for all input channels in an input redundant system may be time-consuming and impractical. In this paper, a control allocation approach is proposed for redundant systems with generic input constraints, where only part of the input-output relationships are required to be identified. The unidentified input-output relationships are estimated online using an expectation maximization (EM) algorithm, and controller allocation is carried out using quadratic programming based on generic linear input constraints. Simulation studies based on robotic welding and over-actuated motion system are provided to show that the unidentified input channels can be well estimated and used to increase disturbance rejection capability and trajectory tracking performance, as compared to using only the constrained known input channels.
机译:输入冗余系统中所有输入通道的系统识别可能是耗时和不切实际的。在本文中,提出了一种具有通用输入约束的冗余系统的控制分配方法,其中仅需要识别部分输入输出关系。使用期望最大化(EM)算法(EM)算法在线估计未认出的输入 - 输出关系,并且使用基于通用线性输入约束的二次编程来执行控制器分配。提供了基于机器人焊接和过致动运动系统的仿真研究,示出了与仅使用受约束的已知输入通道相比,可以很好地估计未识别的输入通道并用于增加干扰抑制能力和轨迹跟踪性能。

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