论文标题

基于累积方法的AC/DC混合系统的概率负载流量计算

Probabilistic load flow calculation of AC/DC hybrid system based on cumulant method

论文作者

Sun, Yinfeng, Xia, Dapeng, Gao, Zichun, Wang, Zhenhao, Li, Guoqing, Lu, Weihua, Wu, Xueguang, Li, Yang

论文摘要

电力系统的运行条件变得更加复杂和多变。本文提出了基于累积方法(PLF-CM)的概率负载流量,用于电压源转换器高压直流电流(VSC-HVDC)混合系统,其中包含光伏电网连接系统。首先,为转换器设置了相应的控制模式,包括下垂控制和主奴隶控制。统一的迭代方法用于计算常规的AC/DC流。其次,基于负载和光伏输出的概率模型,基于上述流量结果,使用本文的相关系数矩阵将将相关样品更改为独立样品,将获得负载和光伏输出的累积。然后,使用革兰氏阴性级别的扩展方法获得了状态变量的概率密度函数(PDF)和状态变量的累积分布函数(CDF)。最后,在修改后的IEEE 34-BUS和IEEE 57-BUS传输系统上计算了节点电压和线功率的平均值和标准偏差。该算法可以反映新能源的固有不确定性,并取代复杂的卷积操作,从而大大提高了计算速度和收敛性。

The operating conditions of the power system have become more complex and changeable. This paper proposes a probabilistic load flow based on the cumulant method (PLF-CM) for the voltage sourced converter high voltage direct current (VSC-HVDC) hybrid system containing photovoltaic grid-connected systems. Firstly, the corresponding control mode is set for the converter, including droop control and master-slave control. The unified iterative method is used to calculate the conventional AC/DC flow. Secondly, on the basis of the probability model of load and photovoltaic output, based on the aforementioned flow results, use correlation coefficient matrix of this paper will change the relevant sample into independent sample, the cumulants of the load and photovoltaic output are obtained; then, the probability density function (PDF) and cumulative distribution function (CDF) of state variables are obtained by using Gram-Charlie series expansion method. Finally, the mean value and standard deviation of node voltage and line power are calculated on the modified IEEE 34-bus and IEEE 57-bus transmission systems. The algorithm can reflect the inherent uncertainty of new energy sources, and replace the complex convolution operation, greatly improving the calculation speed and the convergence.

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