Quantitative measures of controllability for descriptor systems

Haemin Lee, Youngjin Park
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引用次数: 2

Abstract

Controllability and observability are a structural property that carries information useful for control system design. There are many measures to determine the location of actuator and sensor like degree of controllability(DOC), degree of observability(DOO) and degree of disturbance rejectability(DODR). However, Those measures are mostly defined in standard state space systems, not in descriptor systems. Descriptor systems, or singular systems, consist of slow and fast systems, which mean there are singularities in the systems. In this paper, DOC for descriptor systems which is defined as minimum input energy to change the states is proposed and the result is same with the minimum energy to change the states of slow systems and that means the fast systems does not affect the input energy. A simple numerical example is used to verify the result.
广义系统可控性的定量测度
可控性和可观测性是一种结构特性,它携带着对控制系统设计有用的信息。确定作动器和传感器位置的方法有很多,如可控度(DOC)、可观测度(DOO)和抗扰度(DODR)。然而,这些度量大多在标准状态空间系统中定义,而不是在描述符系统中定义。广义系统,或称奇异系统,由慢速系统和快速系统组成,这意味着系统中存在奇点。本文提出了广义系统的DOC,将其定义为改变状态的最小输入能量,其结果与慢速系统改变状态的最小输入能量相同,即快速系统不影响输入能量。最后用一个简单的数值算例验证了计算结果。
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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