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首页> 外文期刊>International Journal of Innovative Computing Information and Control >A NEIGHBORING EXTREMAL SOLUTION FOR OPTIMAL SWITCHED IMPULSIVE CONTROL PROBLEMS WITH LARGE PERTURBATIONS
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A NEIGHBORING EXTREMAL SOLUTION FOR OPTIMAL SWITCHED IMPULSIVE CONTROL PROBLEMS WITH LARGE PERTURBATIONS

机译:具有摄动的最优切换脉冲控制问题的邻域极值解。

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摘要

This paper presents an approach to compute the neighboring extremal solution for an optimal switched impulsive control problem with a pre-specified sequence of modes and a large perturbation in the initial state. The decision variables - the subsystem switching times and the control parameters - are subject to inequality constraints. Since the active status of these inequality constraints may change under the large perturbation, we add fractions of the initial perturbation separately such that the active status of the inequality constraints is invariant during each step, and compute the neighboring extremal solution iteratively by solving a sequence of quadratic programming problems. First, we compute a correction direction for the control in the perturbed system through an extended backward sweep technique. Then, we compute the maximal step size in this direction and derive the solution iteratively by using a revised active set strategy. An example problem involving a shrimp harvesting operation demonstrates that our solution approach is faster than the sequential quadratic programming approach.
机译:本文提出了一种方法,该方法用于计算具有最优模式脉冲序列和初始状态下的大扰动的最优切换脉冲控制问题的邻近极值解。决策变量(子系统切换时间和控制参数)受不等式约束。由于这些不等式约束的活动状态可能在大扰动下发生变化,因此我们分别添加初始扰动的分数,以使不等式约束的活动状态在每个步骤中都是不变的,并通过求解一个序列来迭代计算相邻的极值解。二次编程问题。首先,我们通过扩展的向后扫描技术为扰动系统中的控制计算校正方向。然后,我们计算该方向上的最大步长,并使用修订的活动集策略迭代地得出解决方案。一个涉及虾类捕捞作业的示例问题表明,我们的解决方案方法比顺序二次编程方法要快。

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