计及储能控制的100%新能源电力系统无功优化方法
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TM712

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国家重点研发计划资助项目(2023YFB2405900)


Reactive power optimization method for 100% renewable energy power systems considering energy storage control
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    摘要:

    针对无同步电源支撑的100%新能源电力系统功率波动大和电压水平低等问题,文中分析了储能变流器控制机理,建立计及储能控制和考虑直流外送特性的100%新能源电力系统无功优化模型,提出一种基于储能变流器控制的无功优化方法。该方法可以利用储能变流器控制对系统无功进行优化配置,在储能参与有功功率平衡的基础上进一步发挥储能参与调压的能力,兼顾经济运行与系统电压水平的提升。此外,为满足新能源系统经直流外送的需求,文中建立基于直流通道运行特性的数学模型,优化结果可应用于直流输电曲线规划。最后,选取中国西北地区某无同步电源支撑的县域电网为算例,基于MATLAB中的Yalmip平台求解出电网中各节点有功、无功决策变量的出力,验证所提方法的有效性。

    Abstract:

    This paper addresses issues of large power fluctuations and low voltage levels in 100% renewable energy power systems without synchronous power support. The control mechanism of energy storage converters is analyzed, and a reactive power optimization model is established, considering energy storage control and DC transmission characteristics. A reactive power optimization method based on energy storage converter control is proposed. This method utilizes energy storage converter control to optimize the system's reactive power, enhancing the voltage regulation capability while participating in active power balance and ensuring economical operation. Additionally, a mathematical model based on DC channel operational characteristics is established to meet the demands for DC transmission in renewable energy systems. The optimization results can be applied to DC transmission curve planning. Finally, a case study is conducted on a county-level power grid in Northwest China without synchronous power support. The active and reactive power decision variables at each node in the grid are solved using the Yalmip platform in MATLAB, verifying the effectiveness of the proposed method.

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张阳,李佳朋,张伟,武海燕,张敬一,李宇骏.计及储能控制的100%新能源电力系统无功优化方法[J].电力工程技术,2026,45(1):106-114. ZHANG Yang, LI Jiapeng, ZHANG Wei, WU Haiyan, ZHANG Jingyi, LI Yujun. Reactive power optimization method for 100% renewable energy power systems considering energy storage control[J]. Electric Power Engineering Technology,2026,45(1):106-114.

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  • 收稿日期:2025-05-25
  • 最后修改日期:2025-08-02
  • 在线发布日期: 2026-02-02
  • 出版日期: 2026-01-28
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