基于无功监测引导的绿色变电站光伏消纳运行策略
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TM73

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国家自然科学基金资助项目(52107100)


Operational strategy for renewable energy consumption in green substations guided by reactive power monitoring
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    摘要:

    针对光伏接入绿色变电站导致并网节点电压越限与出力消纳困难问题,提出一种基于无功监测引导的绿色变电站光伏消纳运行策略。该策略通过分析无功电压灵敏度与负荷覆盖率的关系,以光伏消纳最大化为目标函数,将无功监测与有功消纳进行解耦分析,进而预测有功超发功率和无功补偿控制修正量,构建无功电压关系模型。同时,通过挖掘储能系统当前荷电状态和容量约束关系,建立含储能系统的绿色变电站消纳模型。结合无功电压关系模型提出绿色变电站光伏消纳运行策略。在此基础上,采用改进粒子群算法求解模型,并基于IEEE 33节点对所提出的运行策略进行仿真分析。结果表明,所提策略能够在稳定节点接入电压的基础上,有效提升光伏的消纳能力。

    Abstract:

    In response to the challenges posed by grid-connected node voltage exceeding the limit and output consumption during photovoltaic (PV) consumption systems into green substations, the operational strategy for renewable energy consumption in green substations guided by reactive power monitoring is proposed in this research. The primary objective of this strategy is to maximize PV consumption by analyzing the relationship between reactive power-voltage sensitivity and the load coverage rate. Through the decoupling of reactive power monitoring from active power consumption and the precise prediction of crucial variables such as active power surplus and reactive power compensation control correction quantities, a reactive power-voltage relationship model is constructed. Furthermore, through considering their current charge status and capacity constraints, a green substation consumption model with energy storage systems is established. Operational strategy for renewable energy consumption in green substations guided is formulated based on a reactive power-voltage relationship model. The model is solved using a improved particle swarm algorithm and validated via simulations on the IEEE 33-node system. Results demonstrate that the proposed strategy ensures stable grid-connected voltage while significantly enhancing PV consumption capacity.

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王维,杨逸凡,季振亚,韩雪,蔡千慧.基于无功监测引导的绿色变电站光伏消纳运行策略[J].电力工程技术,2026,45(2):41-50. WANG Wei, YANG Yifan, JI Zhenya, HAN Xue, CAI Qianhui. Operational strategy for renewable energy consumption in green substations guided by reactive power monitoring[J]. Electric Power Engineering Technology,2026,45(2):41-50.

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  • 收稿日期:2025-06-19
  • 最后修改日期:2025-10-02
  • 在线发布日期: 2026-02-12
  • 出版日期: 2026-02-28
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