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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Source detection and propagation of equal frequency voltage flicker in nonradial power system
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Source detection and propagation of equal frequency voltage flicker in nonradial power system

机译:非辐射电源系统中等频电压闪变的源检测和传播

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Nowadays electric power quality problems such as flicker (voltage fluctuation) are major concerns of electric companies and industrial consumers. Identification of flicker sources is an important stage in the flicker reduction process. Flicker source can be modeled as a nonlinear load whose admittance is intermittent and time-variant. In the steady state, fluctuation of voltage amplitude is a function of the impedance of flicker sources. In this paper, after calculating the gradient of voltage amplitudes and constructing a Jacobian matrix, criteria for flicker source detection are proposed. Therefore, by measuring voltage and current of each load in the power system, the contaminative loads are identified. In the next step, flicker propagation throughout the power system is investigated. For identifying the dominant flicker source, an algorithm based on a directed graph method is proposed. For different operation modes of flicker sources, the effects of their locations on dominating are analytically interpreted. The proposed methods are tested in a typical nonradial power system in which several flicker sources have been operated. The flicker sources are operated with equal fluctuation frequency and different operation modes. Simulation results show a good performance for the single point proposed method in flicker source detection. These results confirm that the proposed algorithm can identify dominant flicker source as expected for our theory.
机译:如今,诸如闪烁(电压波动)之类的电能质量问题已成为电力公司和工业用户的主要问题。闪烁源的识别是减少闪烁过程中的重要阶段。可以将闪烁源建模为导纳为间歇性且随时间变化的非线性负载。在稳态下,电压幅度的波动是闪烁源阻抗的函数。在计算电压幅度梯度并构造雅可比矩阵后,提出了闪烁源检测的标准。因此,通过测量电力系统中每个负载的电压和电流,可以识别出污染负载。在下一步中,将研究整个电源系统中的闪烁传播。为了识别主要的闪烁源,提出了一种基于有向图的算法。对于闪烁源的不同操作模式,可以解析地解释其位置对控制的影响。在典型的非辐射电源系统中测试了所提出的方法,在该系统中已运行了多个闪烁源。闪烁源以相同的波动频率和不同的操作模式进行操作。仿真结果表明,该方法在闪烁源检测中具有良好的性能。这些结果证实了所提出的算法可以识别出我们理论预期的主要闪烁源。

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