A new control allocation method that accounts for effector dynamics

R. Venkataraman, M. Oppenheimer, D. Doman
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引用次数: 11

Abstract

Given a time history of desired moments, the control allocation problem is to solve for the effector inputs so that some norm of the error between the achieved and desired moments is minimized. Existing methods solve for the actuator deflections, while accounting for magnitude and rate limitations of the effectors. In this paper, we propose the dynamic control allocation (DCA) Method, that also accounts for effector dynamics, in addition to magnitude and rate limits. We show through numerical experiments that the DCA method allocates the desired moments according to effector bandwidths - that is the slow effectors are allocated the lower frequencies in the desired moments. The numerical simulations also show that the DCA outperforms the existing simplex algorithm based LP method, that does not account for actuator dynamics.
考虑效应器动力学的一种新的控制分配方法
给定期望矩的时间历史,控制分配问题是为了解决效应器输入,使达到的矩和期望矩之间的误差的某些范数最小。现有的方法解决了执行器的偏转,同时考虑了执行器的大小和速率限制。在本文中,我们提出了动态控制分配(DCA)方法,除了幅度和速率限制外,还考虑了效应器动力学。通过数值实验表明,DCA方法根据效应器带宽分配所需的矩,即在所需矩中分配较低的频率。数值仿真还表明,该方法优于不考虑作动器动力学的基于单纯形算法的LP方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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