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首页> 外文期刊>International journal of electrical power and energy systems >Capacitive reactive power compensation to prevent voltage instabilities in distribution lines
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Capacitive reactive power compensation to prevent voltage instabilities in distribution lines

机译:电容式无功补偿以防止分配线中的电压不稳定性

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摘要

This article presents an efficient voltage regulation method using capacitive reactive power. Simultaneous operation of photovoltaic power systems with the local grids induces voltage instabilities in the distribution lines. These voltage fluctuations cross the allowable limits on several occasions and cause economic losses. In the proposed method, the reactive power is applied at the load and generated using a capacitor bank. The capacitors are arranged in a binary order of capacitances to enable the 2n equally dispersed combinations. Initially, a strict analytical solution is developed to study the outcome of capacitance connection at load. The capacitance is selected based on the analytical solution of non-linear equations describing voltage deviations in the distribution line connected with photovoltaic systems. The control system is developed for fast and appropriate capacitance selection and a smooth transient process. The experimental setup is developed to verify the theoretical analysis. The measured data shows good agreement with the calculated one, verifying the correctness and accuracy of the proposed method. It is recommended that the reactive power compensation can be applied for a shorter time because the source current enhances substantially as the capacitance is connected to the load. The proposed method can be applied together with the tap-changers functionality, and the capacitance should be disconnected as the tap-changer corrects the transformation ratio.
机译:本文介绍了一种使用电容式无功功率的有效电压调节方法。具有本地电网的光伏电力系统的同时操作在配电线中引起电压不稳定性。这些电压波动在若干场合交叉允许的限制并导致经济损失。在所提出的方法中,在负载处施加无功功率并使用电容器组产生。电容器以二进制电容顺序排列,以使2N同样分散的组合。最初,开发了严格的分析解决方案以研究负载的电容连接的结果。基于描述与光伏系统连接的分配线中的电压偏差的非线性方程的分析解来选择电容。控制系统是为快速且适当的电容选择和平滑的瞬态过程开发的。实验设置是开发的,以验证理论分析。测量数据与计算的数据显示良好的一致性,验证所提出的方法的正确性和准确性。建议可以将无功功率补偿施加较短的时间,因为当电容连接到负载时,源电流基本上增强。所提出的方法可以与分接开关功能一起应用,并且随着抽头更换器校正变换率,应断开电容。

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