计算机科学
可再生能源
分布式计算
互联网
调度(生产过程)
遗传算法
分布式发电
数学优化
网格
工程类
电气工程
几何学
数学
机器学习
万维网
作者
Lin Lihua,Abdallah Abdallah,Mohamad Khairi Ishak,Ziad M. Ali,Imran Khan,Khaled M. Rabie,I. Safak Bayram,Xingwang Li,Dag Øivind Madsen,Ki‐Il Kim
标识
DOI:10.3389/fenrg.2022.921411
摘要
The old economic and social growth model, characterized by centralized fossil energy consumption, is progressively shifting, and the third industrial revolution, represented by new energy and Internet technology, is gaining traction. Energy Internet, as a core technology of the third industrial revolution, aims to combine renewable energy and Internet technology to promote the large-scale use and sharing of distributed renewable energy as well as the integration of multiple complex network systems, such as electricity, transportation, and natural gas. This novel technology enables power networks to save energy. However, multienergy synchronization optimization poses a significant problem. As a solution, this study proposed an optimized approach based on the concept of layered control–collaborate optimization. The proposed method allows the distributed device to plan the heat, cold, gas, and electricity in the regional system in the most efficient way possible. Moreover, the proposed optimization model is simulated using a real-number genetic algorithm. It improved the optimal scheduling between different regions and the independence of distributed equipment with minimal cost. Furthermore, the inverse system and energy and cost saving rate of the proposed method are better than those of existing methods, which prove its effectiveness.
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