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The interaction between scheduling and control of semi-cyclic hybrid systems

机译:半循环混合系统的调度与控制之间的交互作用

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摘要

In this paper a new iterative approach is proposed for the design of a combined real-time scheduling and control algorithm that can be applied to industrial systems that are described by a hybrid model with a (semi-)cyclic behavior. Traditionally scheduling and control problems are considered in a sequential way. First the scheduling problem is solved and subsequently the control problem. This may result in inconsistent solutions such that the system may not operate adequately and does not reach the desired operational targets.In our approach scheduling is done with model predictive control using a switching max-plus linear model of the discrete event part of the system. The interface with a reference generator determines whether the computed reference signal will lead to a feasible response. Furthermore, it estimates the duration of the operations in the system based on the actual state, and communicates that with the scheduler. In an iterative procedure the optimal and feasible schedule can be computed. In a case study the railway traffic on a single track is considered, showing that updating the schedule results in feasible local speed profiles for the trains and less delay in the overall system in case of a delay.
机译:在本文中,提出了一种新的迭代方法来设计组合的实时调度和控制算法,该算法可应用于具有(半)循环行为的混合模型描述的工业系统。传统上,调度和控制问题是按顺序考虑的。首先解决调度问题,然后解决控制问题。这可能导致不一致的解决方案,从而使系统可能无法正常运行并且无法达到所需的运行目标。在我们的方法中,调度是通过使用系统的离散事件部分的切换最大加线性模型进行模型预测控制来完成的。与参考发生器的接口确定计算出的参考信号是否会导致可行的响应。此外,它基于实际状态估计系统中操作的持续时间,并将其与调度程序进行通信。在迭代过程中,可以计算出最佳可行的时间表。在一个案例研究中,考虑了一条轨道上的铁路交通情况,这表明更新时间表会导致列车的可行本地速度曲线,并且在出现延迟的情况下减少整个系统的延迟。

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