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Optimal Reactive Power Dispatch With Accurately Modeled Discrete Control Devices: A Successive Linear Approximation Approach

机译:精确建模的离散控制设备的最优无功分配:连续线性逼近方法

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摘要

In this paper, a novel solution to the optimal reactive power dispatch (ORPD) problem is proposed. The nonlinearity of the power flow equations is handled by a new successive linear approximation approach. For the voltage magnitude terms, a mathematical transformation that improves the accuracy and facilitates the linear modeling of shunt capacitors is used. Without loss of accuracy, the load tap changers and shunt capacitors are both modeled by linear constraints using discrete variables, which facilitates the linearly constrained mixed-integer formulation of the proposed ORPD model. An efficient iterative solving algorithm is introduced. The obtained solution strictly satisfies the power flow equations. Case studies on several IEEE benchmark systems show that the proposed algorithm can efficiently provide near-optimal solutions with the error of the objective functions of less than 0.1%. Compared with several commercial solvers, the proposed method shows distinct advantages in terms of both robustness and efficiency. Moreover, based on the round-off results, a heuristic method that reduces the optimization ranges of the discrete control variables is proposed. This method can further improve the computational efficiency with small losses in accuracy.
机译:本文提出了一种解决最优无功调度问题的新方法。潮流方程的非线性是通过一种新的连续线性逼近方法来处理的。对于电压幅度项,使用了数学变换,该数学变换提高了精度并促进了并联电容器的线性建模。在不损失精度的情况下,均使用离散变量通过线性约束对负载分接开关和并联电容器进行建模,这有利于提出的ORPD模型的线性约束混合整数公式。介绍了一种有效的迭代求解算法。所获得的解严格满足潮流方程。对多个IEEE基准系统的案例研究表明,所提出的算法可以有效地提供目标函数误差小于0.1%的接近最优的解决方案。与几种商用求解器相比,该方法在鲁棒性和效率方面都显示出明显的优势。此外,基于四舍五入结果,提出了一种减小离散控制变量优化范围的启发式方法。该方法可以以较小的精度损失来进一步提高计算效率。

著录项

  • 来源
    《Power Systems, IEEE Transactions on》 |2017年第3期|2435-2444|共10页
  • 作者单位

    State Key Lab of Power Systems, Department of Electrical Engineering, Tsinghua University, Beijing, China;

    School of Electrical Engineering and Computer Science, Washington State University, Pullman, WA, USA;

    State Key Lab of Power Systems, Department of Electrical Engineering, Tsinghua University, Beijing, China;

    State Key Lab of Power Systems, Department of Electrical Engineering, Tsinghua University, Beijing, China;

    State Key Lab of Power Systems, Department of Electrical Engineering, Tsinghua University, Beijing, China;

    State Key Lab of Power Systems, Department of Electrical Engineering, Tsinghua University, Beijing, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mathematical model; Capacitors; Voltage control; Load flow; Reactive power; Linear approximation; Optimization;

    机译:数学模型;电容器;电压控制;潮流;无功功率;线性近似;优化;

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