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Design of complex wind power generation parameter control system based on embedded control combined with Internet of Things

机译:基于嵌入式控制和物联网的复杂风力发电参数控制系统设计

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摘要

We aimed to control complex wind power generation parameters’ contributions to achieve healthful and energy-saving operating conditions for wind turbines and improve the stability of wind power generation and processing capacity of wind grid output data. Hence, a design method of complex wind power generation parameter control system based on embedded control combined with Internet of Things (IoT) is proposed. In this method, in the IoT environment, the overall model of the system is determined, and embedded control for big data of the complex wind power generation parameters is performed to achieve adaptive fusion of control instruction information, and optimize the big data transmission and scheduling of control instruction sets. Test results show that the complex wind power generation parameter control system designed through this method has relatively strong parameter data control processing capability, good stability of control instruction transmission and high parallel processing capability of control instruction sets, and this method improves the control quality of the overall system.
机译:我们旨在控制复杂的风力发电参数,以实现风力涡轮机的健康节能运行条件,并提高风力发电的稳定性和风力发电网输出数据的处理能力。因此,提出了一种基于嵌入式控制与物联网相结合的复杂风力发电参数控制系统的设计方法。该方法在物联网环境中,确定系统整体模型,对复杂风力发电参数的大数据进行嵌入式控制,实现控制指令信息的自适应融合,优化大数据的传输和调度。控制指令集。测试结果表明,该方法设计的复杂风力发电参数控制系统具有较强的参数数据控制处理能力,控制指令传输的稳定性好,控制指令集的并行处理能力高,提高了该系统的控制质量。整体系统。

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