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A calculus of variations approach to the optimal control of discrete event dynamic systems

机译:离散事件动态系统最优控制的变分法

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We present some early results on the control of discrete event dynamic systems (DEDS) using calculus of variations techniques. The idea is motivated by the observation that DEDS can be described by recursive equations of the same form as those used to describe conventional discrete-time continuous-variable dynamic systems. The calculus of variations is one of the few techniques that can handle nonlinearities such as the "max" and "min" operations commonly encountered in DEDS models. We apply the idea to a DEDS control problem in transportation systems and obtain a simple expression for the optimal control policy.
机译:我们提出了一些早期的结果,这些结果涉及使用离散技术演算的离散事件动态系统(DEDS)的控制。该想法是由于观察到的,可以用与描述传统离散时间连续变量动态系统所使用的形式相同形式的递归方程来描述DEDS。差异计算是少数可以处理非线性(例如DEDS模型中常见的“最大”和“最小”运算)的技术之一。我们将该思想应用于运输系统中的DEDS控制问题,并获得了最优控制策略的简单表达。

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