可再生能源
能量平衡
能源消耗
工业园区
能量(信号处理)
功率(物理)
网格
计算机科学
模拟
工程类
汽车工程
电气工程
数学
物理
法学
几何学
统计
生物
量子力学
生态学
政治学
作者
Shaohua Ma,Qiwei Wang,Tong Nie,Zhe Chen,Yun Teng
摘要
Abstract Under the background of green and low‐carbon transformation of industrial high‐energy‐consuming parks, in order to realize the coordinated development planning of energy and transportation under different peaking capacity requirements, this paper proposes a collaborative optimization model of industrial high‐energy‐consuming parks under green and low‐carbon. Firstly, by studying the energy balance mechanism between industrial load and new energy, an energy topology prior model of energy interaction in the next generation of industrial new energy power grid is constructed. Then, based on the probability characteristics of the equilibrium state of different regions in the high‐energy‐consuming industrial zone, combined with the prior knowledge of industrial load and low‐carbon power system, a collaborative development planning model of high‐energy‐consuming industrial parks is constructed. Finally, the proposed model is simulated. From the simulation results the authors can see the dynamic division model and solution algorithm of energy balance region established in this paper can effectively improve the energy balance ability of power grid, reduce peak shaving demand and use more renewable energy.
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