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Computationally efficient method of simulation of an electric drive impact on the power grid

机译:电力驱动对电网影响的仿真计算有效方法

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This paper presents a computationally efficient method for modelling an impact of the converter drive on the power grid. The formalized variable structure method (FVSM) allows for comprehensive studies of the effect on the power grid and examining the relation between this effect and the number of drive and feeding line parameters. In order to obtain a comprehensive model along with the model of the power grid, the parameters that are applied originate from a drive of a coal-fired power station. These parameters have been determined based on assessment and estimation. The estimation process was conducted with the aid of a model that allows for the commutation of power electronic elements. The authors confirmed that the model was correct by comparing empirical and theoretical voltage and current waveforms. Harmonic content of the voltage and current in the power grid which feeds the drive are considered to be the measure of the converter drive impact on the power grid. The standard method for the reduction of a harmonic content in the voltage and current involves the application of line reactors and distribution or converter transformers. As an example, the authors determine the impact of the drive on the power grid with respect to the adopted parameters of the line reactor. This example presents FVSM abilities with regard to simulation of complex systems that contain power grid components and converter drives.
机译:本文提出了一种计算效率高的方法,用于对变频器驱动对电网的影响进行建模。形式化的可变结构方法(FVSM)可以对电网的影响进行全面研究,并检查这种影响与驱动器数量和馈线参数之间的关系。为了获得与电网模型一起的综合模型,所应用的参数源自燃煤电站的驱动器。这些参数是根据评估和估计确定的。估计过程是在允许电力电子元件换向的模型的帮助下进行的。作者通过比较经验和理论电压和电流波形,确认该模型是正确的。馈送给驱动器的电网中电压和电流的谐波含量被认为是变流器驱动器对电网的影响的量度。降低电压和电流中谐波含量的标准方法包括应用线路电抗器和配电变压器或换流变压器。例如,作者根据输入电抗器的参数确定驱动器对电网的影响。该示例展示了FVSM在模拟包含电网组件和变频器驱动器的复杂系统方面的能力。

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