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Actuator location optimization in synchronization control of networked distributed parameter systems

机译:网络分布式参数系统同步控制中的执行器位置优化

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This work examines the effects of actuator location in networked distributed parameter systems. In particular, the effects of the optimal actuator location for one networked system can impact the collective behavior of the networked systems. The actuator optimization cannot be performed on the individual networked systems, but must be considered for the aggregate of the networked systems. To tackle the actuator optimization problem, the networked systems are viewed collectively and with the implementation of a synchronization controller, the resulting closed-loop aggregate system is parameterized by the actuator location. Using different metrics for the success of synchronization, the resulting actuator optimization problem is recast as a minimization of a performance index. The solution to this optimization is expressed as the minimization of the trace of a location-parameterized Lyapunov operator. Simulation studies on seven networked diffusion partial differential equations in one spatial dimension reveal the effects of a correct actuator placement on synchronization.
机译:这项工作研究了网络分布式参数系统中执行器位置的影响。特别地,用于一个联网系统的最佳致动器位置的影响会影响联网系统的集体行为。执行器优化不能在单个网络系统上执行,但必须考虑网络系统的总体情况。为了解决执行器优化问题,需要对网络系统进行集中查看,并通过同步控制器的实施,通过执行器位置对所得的闭环集合系统进行参数化。使用不同的度量标准来成功实现同步,可以将重现的执行器优化问题重现为性能指标的最小化。这种优化的解决方案表示为位置参数化Lyapunov算子的迹线最小化。在一个空间维度上对七个联网的扩散偏微分方程的仿真研究揭示了正确的执行器位置对同步的影响。

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