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Sensor configuration selection for discrete-event systems under unreliable observations

机译:在不可靠的观察中的离散事件系统的传感器配置选择

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Algorithms for counting the occurrences of special events in the framework of partially-observed discrete-event dynamical systems (DEDS) were developed in previous work. Their performances typically become better as the sensors providing the observations become more costly or increase in number. This paper addresses the problem of finding a sensor configuration that achieves an optimal balance between cost and the performance of the special event counting algorithm, while satisfying given observability requirements and constraints. Since this problem is generally computational hard in the framework considered, a sensor optimization algorithm is developed using two greedy heuristics, one myopic and the other based on projected performances of candidate sensors. The two heuristics are sequentially executed in order to find best sensor configurations. The developed algorithm is then applied to a sensor optimization problem for a multi-unit-operation system. Results show that improved sensor configurations can be found that may significantly reduce the sensor configuration cost but still yield acceptable performance for counting the occurrences of special events.
机译:在以前的工作中开发了用于计算部分观察到的离散事件动态系统(DEDS)框架中的特殊事件发生的算法。随着提供观察的传感器变得更昂贵或数量增加,它们的性能通常变得更好。本文解决了找到传感器配置的问题,该传感器配置在成本和特殊事件计数算法的性能之间实现了最佳平衡,同时满足了给定的可观察性要求和约束。由于该问题在考虑的框架中通常是难以计算的,因此使用两个贪婪的启发式,一个近视和另一个基于候选传感器的投影性能来开发传感器优化算法。依次执行两个启发式,以便找到最佳的传感器配置。然后将开发的算法应用于多单元操作系统的传感器优化问题。结果表明,可以发现改进的传感器配置,可以显着降低传感器配置成本,但仍然可以产生可接受的性能,以计算特殊事件的出现。

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