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OPTIMAL CONTROL FOR DISCRETE EVENT AND HYBRID SYSTEMS

机译:离散事件和混合系统的最优控制

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摘要

As time-driven and event-driven systems are rapidly coming together, the field of optimal control is presented with an opportunity to expand its horizons to these new "hybrid" dynamic systems. In this paper, we consider a general optimal control problem formulation for such systems and describe a modeling framework allowing us to decompose the problem into lower and higher-level components. We then show how to apply this setting to a class of switched linear systems with a simple event-driven switching process, in which case explicit solutions may often be obtained. For a different class of problems, where the complexity lies in the nondifferentiable nature of event-driven dynamics, we show that a different type of decomposition still allows us to obtain explicit solutions for a class of such problems. These two classes of problems illustrate the differences between various sources of complexity that one needs to confront in tackling optimal control problems for discrete-event and hybrid systems.
机译:随着时间驱动和事件驱动系统的迅速融合,在最佳控制领域将有机会将其视野扩展到这些新的“混合”动态系统。在本文中,我们考虑了此类系统的一般最优控制问题公式,并描述了一个建模框架,使我们可以将问题分解为较低和较高级别的组件。然后,我们展示如何通过简单的事件驱动切换过程将此设置应用于一类切换线性系统,在这种情况下,通常可以得到明确的解决方案。对于不同类别的问题,复杂性在于事件驱动动力学的不可微性质,我们证明了不同类型的分解仍然允许我们为此类问题获得显式解。这两类问题说明了在解决离散事件和混合系统的最佳控制问题时需要面对的各种复杂性源之间的差异。

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