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Control Input Design: Detecting Non Influential Inputs While Satisfying a Reachability Specification

机译:控制输入​​设计:在满足可达性规范的同时检测无影响的输入

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摘要

We address the problem of designing the control input for a discrete time dynamical system so as to make its state reach some target set in nite time. Among the feasible solutions to the reachability problem, we look for those where only few input variables need to be set to some specic value, whereas the others can take an arbitrary value within their admissible range without compromising the desired reachability condition. This input design problem is not standard and the optimality criterion cannot be easily expressed in terms of some performance index to be optimized. Here, we propose a solution that rests on an appropriate parametrization of the input variables as set-valued signals, and rephrase the input design problem as a robust optimization program. In turn, if the target set is a polytope, the optimization problem reduces to a linear program for linear system, and to a mixed integer linear program for mixed logical dynamical systems. Some numerical examples show the ecacy of the approach.
机译:我们解决了为离散时间动力系统设计控制输入的问题,以使其状态在有限时间内达到某个设定的目标。在可及性问题的可行解决方案中,我们寻找那些仅需将少数输入变量设置为某个特定值,而其他输入变量可以在其可接受范围内取任意值而又不损害所需可及性条件的变量。该输入设计问题不是标准的,并且最佳标准不能轻易地根据要优化的某些性能指标来表达。在这里,我们提出了一种解决方案,该解决方案取决于将输入变量作为设置值信号进行适当的参数化,并将输入设计问题改写为鲁棒的优化程序。反过来,如果目标集是多面体,则优化问题将简化为线性系统的线性程序,并简化为混合逻辑动力学系统的混合整数线性程序。一些数值示例表明了该方法的有效性。

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