Runtime Management and Quantitative Evaluation of Changing System Goals

V. Klös, Thomas Göthel, Adrian Lohr, S. Glesner
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引用次数: 12

Abstract

A key challenge in cyber-physical systems is their highly dynamic nature including changing system goals. Therefore, these systems have to autonomously manage their system goals and continuously evaluate their achievement at run-time. However, with the increasing complexity of system goals including, e.g., priorities, dependencies, and conflicts among goals, abinary or qualitative judgement of achievement of goals is not sufficient any more. Instead, it is necessary to quantify the degree to which the goals are fulfilled in order to balance the cost-benefit ratio at run-time. In this paper, we present a hierarchical and modular goal model that allows for capturing complex relations between subgoals, e.g., dependencies and conflicts. We provide an algorithm that efficiently evaluates gradual achievement of goalsat run-time. Due to the modular structure of our model and our evaluation, goals can easily be added, removed, and changed at run-time. With our approach, we a) ease the design of goal-aware autonomous systems by providing an explicit structure that emphasises relations between subgoals, b) provide an automatic quantification of the satisfaction of complex system goals that can be used to, e.g., evaluate autonomous decisions at runtime, andc) enable runtime management of changing system goals.
运行时管理和变化系统目标的定量评估
网络物理系统的一个关键挑战是其高度动态性,包括不断变化的系统目标。因此,这些系统必须自主地管理它们的系统目标,并在运行时持续地评估它们的成就。然而,随着系统目标的复杂性的增加,包括,例如,优先级,依赖关系,以及目标之间的冲突,对目标实现的二元或定性判断不再是足够的。相反,有必要量化目标实现的程度,以便在运行时平衡成本效益比。在本文中,我们提出了一个分层和模块化的目标模型,该模型允许捕获子目标之间的复杂关系,例如,依赖关系和冲突。我们提供了一个算法,有效地评估逐步实现的目标在运行时。由于我们的模型和评估的模块化结构,可以很容易地在运行时添加、删除和更改目标。使用我们的方法,我们a)通过提供强调子目标之间关系的明确结构来简化目标感知自治系统的设计,b)提供可用于评估运行时自治决策的复杂系统目标满意度的自动量化,以及c)启用更改系统目标的运行时管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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