基于风能、太阳能、水能、热能和电池能源互补特性的多能容量优化配置

Yanhong Ma, Qiang Zhou, Dingmei Wang, Yue-Chun Chen, Shiyou Yang
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引用次数: 3

摘要

为了缓解风能和太阳能的随机性对电网正常运行的破坏性影响,首先基于风能、太阳能、水能、热能和电池的互补特性和运行策略,建立了风能-太阳能-水热-电池容量的多目标优化配置模型。然后介绍了一种缩放技术,以解决不同目标函数的振幅差异很大的问题。最后,利用遗传算法求解了风电、光伏、火电和储能系统的优化配置问题。算例结果验证了所提出的多能互补系统优化配置模型和算法的可行性和适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Configuration of Multi-energy Capacity Based on Complementary Characteristics of Wind, Solar, Hydro, Thermal, and Battery Energy
To alleviate the disruptive effects of the random-ness in wind and solar energy on the normal operation of a power grid, a multi-objective optimal configuration model for the wind-solar-hydro-thermal-batteiy capacity is first developed based on the complementary characteristics and operation strategies of wind, solar, hydro, thermal and battery. A scaling technique is then introduced to address the large difference in the amplitudes of different objective functions. Finally, a genetic algorithm is employed to solve the optimal configuration problem of wind power, photovoltaic, thernial power and energy storage capacity in a wind-solar-hydro-themial-batteiy power generation system. The numerical results on a case study have validated the feasibility and applicability of the proposed multi-energy complementaiy system optimization configuration model and algorithm.
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