Capacity Allocation Optimization and Economic Analysis of Multi-Power System Including Wind Power, Photovoltaic, Thermal Power, and Storage

Yangdong Zhou, Ziwei Chen, Zhifang Shao
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引用次数: 1

Abstract

In recent years, with the proportion of renewable energy in the grid continuously increasing, the study of the stability and economics of renewable energy system has become a hot spot. This paper builds a capacity allocation optimization model for a multi-power system including wind power, photovoltaic, thermal power and storage. The model comprehensively considers initial investment costs, operation and maintenance costs, and social benefits as factors that affect the system's economics, with the goal of maximizing the annual profit. The particle swarm algorithm is used to solve the model, and the optimal capacity allocation of each part of the system are given. Finally, in the calculation example, the economics of the system under various modes are compared. The example shows that the model mentioned in this paper has certain feasibility and practical guiding significance in terms of economy and operation effect.
风电、光伏、火电、储能多电力系统容量分配优化及经济性分析
近年来,随着可再生能源在电网中的比重不断提高,对可再生能源系统稳定性和经济性的研究成为热点。本文建立了风电、光伏、火电、储能等多电源系统的容量分配优化模型。该模型综合考虑了影响系统经济性的初始投资成本、运维成本和社会效益等因素,以年利润最大化为目标。采用粒子群算法对模型进行求解,给出了系统各部分容量的最优分配。最后,通过算例对系统在不同模式下的经济性进行了比较。实例表明,本文提出的模型在经济性和运行效果上具有一定的可行性和实际指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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