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A framework for actuator placement in large scale power systems: Minimal strong structural controllability

机译:大型动力系统中执行器放置的框架:最小的强结构可控性

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This paper addresses the problem of minimal placement of actuators in large-scale linear time invariant (LTI) systems, such as large-scale power systems, for dynamic controller design. A novel sufficient and necessary condition to ensure a strong structurally controllable (SSC) system is proposed. Specifically, the paper addresses the problem of obtaining the minimal number of dedicated inputs, i.e., inputs which actuate only a single state variable, and the respective state variables they should be assigned to, such that the LTI system is SSC. In addition, an efficient and scalable algorithm, with polynomial implementation complexity, to achieve such minimal placement of dedicated inputs is proposed. An illustration of the proposed design methodology is provided on the IEEE 5-bus test system, thereby identifying the minimal number of physical state variables to be actuated for ensuring strong structural controllability.
机译:本文针对用于动态控制器设计的大型线性时不变(LTI)系统(例如大型电源系统)中的执行器最小化布置问题进行了探讨。提出了一种新颖的充分必要条件,以确保强大的结构可控(SSC)系统。具体地,该论文解决了获得最少数量的专用输入,即仅致动单个状态变量的输入,以及应将它们分配给各个状态变量的问题,使得LTI系统是SSC。另外,提出了一种有效且可扩展的算法,其具有多项式实现复杂度,以实现专用输入的这种最小放置。在IEEE 5总线测试系统上提供了所建议的设计方法的说明,从而确定了为确保强大的结构可控性而要激活的最小数量的物理状态变量。

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