On a property of optimal controllers with boundedness constraints

H. Groginsky
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引用次数: 2

Abstract

This paper deals with a theory for optimal control systems designed to operate a plant of known characteristics. It is assumed that error-free measurement of the system input and the system behavior is permitted, but only limited changes in the system characteristics can be effected by the control variables at the designer's disposal. It is shown that within this limitation for a wide class of inputs and systems, and for a certain class of measures of the system performance, an optimal system behaves as a relay or switched system during the transient period, and as a continuous system during periods in which the input is produced identically. A procedure is described for determining the switching times during the transient period in terms of the permissible measurements. The result is the design of the optimal controller. Typically, its realization requires analog computation of the switching function and digital switching of the control variables. The design of a second-order regulator system, in which the control variable is the gain in the feedback path, is obtained. Marked improvement in the system performance is noted.
具有有界约束的最优控制器的一个性质
本文讨论了设计用于运行已知特性的设备的最优控制系统的理论。假定系统输入和系统行为的无误差测量是允许的,但只有有限的系统特性变化可以由设计者的控制变量影响。结果表明,在这一限制范围内,对于广泛的输入和系统类别,以及对系统性能的某类测量,最优系统在暂态期间表现为继电器或开关系统,在输入产生相同的期间表现为连续系统。描述了一种根据允许的测量值确定暂态期间开关时间的程序。最后给出了最优控制器的设计。通常,它的实现需要模拟计算开关函数和数字切换控制变量。给出了以反馈路径上的增益为控制变量的二阶调节器系统的设计。系统性能明显改善。
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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