基于负序加权等效模型的不平衡负荷平衡补偿方法

Liao Kunyu, Tao Shun, Zhao Lei, Yao Liting, Xiao Xiangning
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引用次数: 1

摘要

在设计无源网络补偿不平衡负载时,通常采用理想的平衡电压源来产生共耦合点电压,但实际系统中由于共耦合点电压的不平衡,补偿效果不太好。对于三相三线制电路,系统侧等效为Thevenin模型,将负载的负序电流分解为三部分,经过加权分配为三相后,各部分依次旋转为正序。在此基础上,建立了三相不平衡负荷负序加权等效模型。在负载参数相等的情况下,利用施泰因梅茨理论,给出了无源补偿网络参数的负序加权公式。由于网络参数是负序列权值的函数,所提出的补偿方法可以为最优平衡补偿提供理论依据。仿真结果验证了等效模型和补偿方法的有效性。
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A balance compensation method based on negative sequence weighted equivalent model of unbalanced load
when designing a passive network to compensate unbalanced load, an ideal and balanced voltage source is usually taken to generate the voltage at the point of common coupling (PCC), but the compensation results is not so good due to the unbalance of PCC voltage in real systems. With regard to three- phase three-wire circuit, the system side is equivalent to Thevenin model, and the negative sequence current of the load is decomposed into three parts, after being weighted and allotted into three phases, each part then rotates to the positive sequence. Based on the above procedure, the negative sequence weighted equivalent model of three-phase unbalanced load is established in this paper. With equivalent load parameters, the negative- sequence-weighted formula of passive compensation network parameters is presented utilizing the Steinmetz theory. Since the network parameters are functions of negative-sequence-weights, the proposed compensation method can provide a theoretical basis for optimal balance compensation. Simulation results verify the validity of the equivalent model and compensation method proposed.
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