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Rapid Prototyping of Low-Complexity Orchestrator Targeting CyberPhysical Systems: The Smart-Thermostat Usecase

机译:瞄准网络物理系统的低复杂性乐器的快速原型设计:智能恒温器用例

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摘要

Recently, a new generation of systems with integrated computational and physical capabilities, also known as CyberPhysical Systems (CPSs), has been introduced. The control of these systems often results in very high-order models imposing great challenges to the analysis and design problems. In the context of this paper, a decision-making mechanism for these systems is proposed. Moreover, we introduce a virtual prototyping framework for the physical implementation and customization of these orchestrators. For evaluation purposes, the introduced solution is applied to design a low-cost smart thermostat in a microgrid environment. Experimental results highlight the superiority of introduced orchestrator, as it achieves comparable performance to state-of-the-art relevant decision-making approaches, but with considerable lower computational and storage complexities.
机译:最近,已经介绍了具有集成计算和物理功能的新一代系统,也称为Cyber​​ Phareical Systems(CPS)。这些系统的控制通常会导致非常高级模型对分析和设计问题产生巨大挑战。在本文的上下文中,提出了一种用于这些系统的决策机制。此外,我们为这些协调机的物理实现和定制引入虚拟原型设计框架。为了评估目的,应用了引入的解决方案在微电网环境中设计了一种低成本的智能恒温器。实验结果突出了引进的协调件的优越性,因为它达到了最先进的相关决策方法的可比性,但具有相当较低的计算和存储复杂性。

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