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The split system approach to managing time in simulations of hybrid systems having continuous and discrete event components

机译:在具有连续和离散事件组件的混合系统的仿真中,用于管理时间的拆分系统方法

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The efficient and accurate management of time in simulations of hybrid models is an outstanding engineering problem. General a priori knowledge about the dynamic behavior of the hybrid system (i.e. essentially continuous, essentially discrete, or 'truly hybrid') facilitates this task. Indeed, for essentially discrete and essentially continuous systems, existing software packages can be conveniently used to perform quite sophisticated and satisfactory simulations. The situation is different for 'truly hybrid' systems, for which direct application of existing software packages results in a lengthy design process, cumbersome software assemblies, inaccurate results, or some combination of these independent of the designer's a priori knowledge about the system's structure and behavior. The main goal of this paper is to provide a methodology whereby simulation designers can use a priori knowledge about the hybrid model's structure to build a straightforward, efficient, and accurate simulator with existing software packages. The proposed methodology is based on a formal decomposition and re-articulation of the hybrid system; this is the main theoretical result of the paper. To set the result in the right perspective, we briefly review the essentially continuous and essentially discrete approaches, which are illustrated with typical examples. Then we present our new, split system approach, first in a general formal context, then in three more specific guises that reflect the viewpoints of three main communities of hybrid system researchers and practitioners. For each of these variants we indicate an implementation path. Our approach is illustrated with an archetypal problem of power grid control.
机译:混合模型仿真中时间的高效和准确管理是一个突出的工程问题。关于混合系统的动态行为的一般先验知识(即,基本上连续的,基本上离散的或“真正的混合”)促进了该任务。实际上,对于基本离散和基本连续的系统,可以方便地使用现有软件包来执行非常复杂和令人满意的仿真。对于“真正的混合”系统而言,情况有所不同,因为直接应用现有软件包会导致冗长的设计过程,繁琐的软件组装,不准确的结果,或者这些因素的某种组合,而与设计者对系统结构和性能的先验知识无关。行为。本文的主要目的是提供一种方法,仿真设计人员可以使用关于混合模型结构的先验知识来构建具有现有软件包的简单,高效和准确的仿真器。所提出的方法基于混合系统的形式分解和重新表达。这是本文的主要理论结果。为了以正确的视角确定结果,我们简要回顾了基本连续和基本离散的方法,并通过典型示例进行了说明。然后,我们首先在一般的正式语境中介绍我们的新的,拆分系统的方法,然后以三种更具体的形式介绍它们,以反映混合系统研究人员和实践人员三个主要社区的观点。对于这些变体中的每一个,我们都指出了一个实现路径。电网控制的原型问题说明了我们的方法。

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