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An improved simulation approach for the analysis of voltage flicker and the evaluation of mitigation strategies

机译:一种改进的仿真方法,用于电压闪变分析和缓解策略评估

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An approach to the estimation of the severity of power system voltage flicker is presented in this paper. The presented technique is a simulation approach using a combined time/frequency-domain analysis technique. This hybrid approach allows the accuracy of differential equation-based mathematical models for critical components and the simplicity of phasor/impedance frequency-domain models for other components to be used in the same algorithm. Frequency-domain techniques are used to formulate a multi-phase power distribution system model to account for the effects of system unbalance. To incorporate the inherent temporal nature of the flicker problem, time-domain techniques are used to represent loads that produce flicker and the equipment that may be installed to mitigate flicker. A least-squares estimation technique developed for digital relaying applications is used as an "interface" between the time-domain differential equation solutions and the frequency-domain network solutions. Both peak-to-peak and RMS bus voltages are automatically generated by the algorithm and are shown to be accurate relative to EMTP software.
机译:本文提出了一种估计电力系统电压闪变严重程度的方法。提出的技术是一种使用时/频域组合分析技术的仿真方法。这种混合方法可以在同一算法中使用关键组件的基于微分方程的数学模型的准确性,以及其他组件的相量/阻抗频域模型的简单性。频域技术用于制定多相配电系统模型,以解决系统不平衡的影响。为了合并闪烁问题的固有时间性质,时域技术用于表示产生闪烁的负载以及可以安装以减轻闪烁的设备。为数字中继应用开发的最小二乘估计技术被用作时域微分方程解决方案和频域网络解决方案之间的“接口”。该算法自动生成峰峰值和RMS总线电压,并且相对于EMTP软件显示出准确的电压。

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