嵌入式系统模式持续变化的启发式资源分配策略

Silke Schomann, K. Ecker, D. Stankovic
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引用次数: 1

摘要

本文讨论了机电系统等高动态技术设备的控制问题。为了执行所需的行为,需要定期读取通知设备状态的传感器。传感器信号通过计算活动在端到端计算中进行处理,如果测量数据偏离技术规范,则会导致执行器的新设置。我们考虑这种情况,即设施的操作条件的变化是连续模式变化的基础。假设机电系统工作模式的多样性是有限的,即一个系统组件的较高要求可能会排除其他组件的较高要求。我们期望这些依赖关系在设备的技术规范中有详细说明,并且从它们可以推导出现实模式的领域。这项工作的目标是定义启发式算法,旨在为固定数量的处理器找到最小可行分配集,并通过实验比较它们的实用性。
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Heuristic resource allocation strategies for embedded systems with continuous mode changes
This paper discusses the problem of controlling highly dynamic technical facilities such as mechatronic systems. To enforce the required behavior, sensors informing about the status of the facility are periodically read. The sensor signals are processed in end-to-end computations by computational activities, and, in case the measured data deviate from the technical specification, result in new settings of actuators. We consider the case that the changes of operating conditions of the facility underlie continuous mode changes. It is assumed that the variety of operation modes mechatronic systems may work in are restricted in the sense that a higher requirement in one system component may exclude higher requirements in other components. We expect that such dependencies are specified in the technical specification of the facility, and that from them the domain of realistic modes can be derived. The objective of this work is defining heuristic algorithms that intend to finding minimum sets of feasible allocations for a fixed number of processors, and comparing their usefulness experimentally.
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