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Fuzzy-Based Actuators Controlling for Minimizing Power Consumption in Cyber-physical System

机译:基于模糊的执行器控制,可最小化网络物理系统中的功耗

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In recent years, the public has been paying ever greater attention to problems associated with energy production and consumption. Major news publications print headlines such as "Crude-oil Production Is Winding Down" and "Natural Gas Is in Scarce Supply." Nuclear crises seem more likely than ever, whether caused by human actions or natural disasters. Energy-supply issues rightly constitute one of the most important issues that we face. Before a viable alternative energy source of supply is discovered and implemented, energy saving is essential. This work proposes a method based on fuzzy logic for scheduling and controlling electrical operators in a cyber-physical system. Not only output of process but also environmental variations are considered. The electrical operators are assumed to be of a single type but with various capabilities. One set of sensors is placed dispersedly around the to-be-affected area for measuring the output of processes. Another set of sensors would collect the data on environmental-variations to predict purposes. The results of a simulation reveal that fuzzy control method for actuators in a cyber-physical system can be used to minimize the power consumption of the system while accomplishing the desired set point.
机译:近年来,公众越来越关注与能源生产和消费有关的问题。主要新闻出版物登上了头条,例如“原油产量正在下降”和“天然气供不应求”。核危机似乎比以往任何时候都更可能发生,无论是由人类行为还是自然灾害引起的。能源问题正确地构成了我们面临的最重要的问题之一。在发现并实施可行的替代能源之前,节能是必不可少的。这项工作提出了一种基于模糊逻辑的方法,用于调度和控制电子物理系统中的电气操作员。不仅要考虑过程的输出,还要考虑环境的变化。假定电气操作员为单一类型,但功能多样。一组传感器散布在要受影响的区域周围,以测量过程的输出。另一组传感器将收集有关环境变化的数据以预测目的。仿真结果表明,用于电子物理系统中执行器的模糊控制方法可用于在达到所需设定值的同时将系统的功耗降至最低。

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