考虑柔性负荷的分布式无功优化策略

Distributed Reactive Power Optimization Strategy Considering Flexible Loads

  • 摘要: 随着新能源的大规模接入,电力系统面临着风电和光伏所带来的潮流波动和电压越限等问题。为了合理协调电网中的可控资源以优化系统运行状态,提出了一种考虑柔性负荷的分布式无功优化策略。首先构建了三类典型柔性负荷的数学模型,模拟其无功调节能力。综合考虑系统的网络损耗和电压偏差,提出计及柔性负荷的多目标无功优化模型。然后,对配电网进行分区处理,将模型重构成分布式优化模型。进而开发了一种基于残差平衡的自适应交替方向乘子法的分布式算法对模型进行求解。该方法可以自适应地调整惩罚参数,提高分布式算法的收敛性和求解速度。基于改进的IEEE33 节点配电网系统的算例分析表明所提策略可以有效地改善网络损耗和节点电压偏差。计算结果也证明所提算法可以有效提高分布式计算的效率。

     

    Abstract: With the large-scale integration of distributed renewable energy sources (RES), the power system faces challenges such as power flow fluctuations and voltage violation caused by wind power and photovoltaic (PV) systems. To coordinate the controllable resources and optimize the operation of the system, a distributed reactive power optimal dispatch strategy is proposed considering flexible resources on the load side. Mathematical models for three typical load-side flexible resources are established to simulate their reactive power regulation capabilities. A multi-objective reactive power optimization model that accounts for the load side resources is proposed to minimize both the power losses and voltage deviations. Subsequently, the distribution network (DN) is segmented, and the model is reconstructed into a distributed optimization model. A distributed solution method based on the Residual balancing based adaptive alternating direction method of multipliers (RBA-ADMM) algorithm is developed to address the proposed model. This method is capable of adaptively adjusting penalty parameters, thereby improving the convergence and computational speed of distributed algorithms. Case studies based on a modified IEEE 33-bus distribution system demonstrate the effectiveness of the proposed strategy in mitigating power losses and voltage deviations. Additionally, numerical results also validate the superior computational efficiency of the RBA-ADMM based distributed solution method.

     

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