具有实时约束的离散事件系统的可扩展优化算法:最新发展概述

Jianfeng Mao, C. Cassandras
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引用次数: 3

摘要

具有实时约束的离散事件系统涉及必须在指定的硬期限内完成的任务。保证这样的约束需要通过成本函数来衡量控制努力,从而产生一类非线性优化问题。我们概述了最近的发展,旨在以有效的可扩展方式解决此类问题,适合具有有限计算资源的在线应用程序。我们描述了如何利用这类问题中最优状态轨迹的结构特性,并提出了单阶段系统处理任务时的关键任务分解算法(CTDA)。当任务在多个阶段进行处理并受到端到端实时约束时,会利用一组不同的结构属性,从而产生虚拟截止日期算法(VDA)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scalable optimization algorithms for discrete event systems with real-time constraints: An overview of recent developments
Discrete event systems with real-time constraints involve tasks that must be completed within specified hard deadlines. Guaranteeing such constraints requires a control effort measured through a cost function, giving rise to a class of nonlinear optimization problems. We overview recent developments aimed at solving such problems in an efficient scalable fashion suitable for on-line applications with limited computational resources. We describe how structural properties of the optimal state trajectory in such problems can be exploited and present a critical task decomposition algorithm (CTDA) when tasks are processed by a single-stage system. When tasks are processed over multiple stages and are subject to end-to-end real-time constraints, a different set of structural properties is exploited leading to a virtual deadline algorithm (VDA).
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