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Optimal control of impulsive switched systems with minimum subsystem durations

机译:具有最小子系统持续时间的脉冲开关系统的最优控制

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This paper presents a new computational approach for solving optimal control problems governed by impulsive switched systems. Such systems consist of multiple subsystems operating in succession, with possible instantaneous state jumps occurring when the system switches from one subsystem to another. The control variables are the subsystem durations and a set of system parameters influencing the state jumps. In contrast with most other papers on the control of impulsive switched systems, we do not require every potential subsystem to be active during the time horizon (it may be optimal to delete certain subsystems, especially when the optimal number of switches is unknown). However, any active subsystem must be active for a minimum non-negligible duration of time. This restriction leads to a disjoint feasible region for the subsystem durations. The problem of choosing the subsystem durations and the system parameters to minimize a given cost function is a non-standard optimal control problem that cannot be solved using conventional techniques. By combining a time-scaling transformation and an exact penalty method, we develop a computational algorithm for solving this problem. We then demonstrate the effectiveness of this algorithm by considering a numerical example on the optimization of shrimp harvesting operations.
机译:本文提出了一种新的计算方法,用于解决由脉冲切换系统控制的最优控制问题。这样的系统由多个连续运行的子系统组成,当系统从一个子系统切换到另一个子系统时,可能会发生瞬时状态跳转。控制变量是子系统持续时间和影响状态跳转的一组系统参数。与大多数其他有关脉冲开关系统控制的论文相比,我们不需要在时间范围内激活每个潜在的子系统(删除某些子系统可能是最佳选择,尤其是当开关的最佳数量未知时)。但是,任何活动的子系统必须在最短的不可忽略的时间内保持活动状态。这种限制导致子系统持续时间中不相交的可行区域。选择子系统持续时间和系统参数以最小化给定成本函数的问题是非标准的最优控制问题,使用常规技术无法解决。通过结合时标变换和精确罚分方法,我们开发了一种用于解决此问题的计算算法。然后,我们通过考虑优化虾类捕捞作业的数值示例来证明该算法的有效性。

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