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The use of genetic algorithm in the design of internet of things platform of heat energy collection system

机译:遗传算法在热能收集系统互联网平台设计中的使用

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Objective: The application of genetic algorithm in the design of the Internet of Things platform of heat energy collection system is launched, and the value of the application of the Internet of Things control platform of genetic algorithm in the heat energy collection system is analyzed to verify its effectiveness and superiority. Method: Firstly, the design of the basic framework of the Internet of Things is developed, mainly on the acquisition and processing module and the communication module of the framework. Then, genetic algorithm is used to make statistics of the system nodes in the heat energy collection system, and establish the optimization function of heat energy conversion rate based on genetic algorithm. Then, the optimization function is used to design the control circuit to improve the flexibility of the control circuit. Finally, the system developed in this study is verified by experiments. Results: After the application of three platforms to control the heat energy collection system, the heat energy conversion rate is higher than that of the previous platform, and the platform controlled thermal energy conversion rate is the highest. Moreover, the real-time energy consumption is the smallest. Conclusion: It is found that the application of genetic algorithm in the Internet of Things platform of the heat energy collection system can effectively optimize the heat energy conversion rate, and the real-time work energy consumption is also very low, which improves the heat energy standardization rate, has certain application value, and can better improve the energy source rate.
机译:目的:遗传算法在发射热能收集系统的互联网平台设计中的应用,分析了热能收集系统中遗传算法的应用控制平台的应用的价值进行了验证它的有效性和优越性。方法:首先,主要开发了物联网基本框架的设计,主要是在采集和处理模块和框架的通信模块上。然后,遗传算法用于在热能收集系统中进行系统节点的统计,并基于遗传算法建立热能转换率的优化功能。然后,优化函数用于设计控制电路以提高控制电路的灵活性。最后,通过实验验证了本研究中开发的系统。结果:在三个平台应用到控制热能收集系统之后,热能转换率高于前一个平台,平台控制的热能转换率最高。而且,实时能耗是最小的。结论:发现,遗传算法在热能收集系统的地板上的应用可以有效地优化热能转换率,实时工作能耗也很低,这提高了热能标准化率,具有一定的应用价值,可以更好地提高能源源率。

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