基于PMU的有源配电网自适应Pacs等效参数辨识

D. Degtyarev, A. Voloshin, A. Kovalenko, D.M. Biserov, V.S. Volnyy, S. A. Danilov
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摘要

今天,有一种趋势是引入分布式发电,包括增加可再生能源的份额。大量的分布式发电导致传统的继电保护运行(离线)参数计算方法效率低下,从而导致继电保护不当,降低供电可靠性。现有的触发参数计算方法的一个显著缺点是电力系统以两种模式表示:最大和最小模式。在分布式发电比例较高的配电网中,在发电方式和发电负荷变化迅速,除天气条件外,还取决于其他因素的情况下,有必要根据当前方式计算和调整继电保护和自动化参数。为解决继电保护触发参数对电流模式的适应性问题,提出建立并保持被保护电气设备所在的电网(以下简称内网)的数学模型。为了建立准确的电网电流数学模型,建议使用外部电力系统的电流当量。由于外部电源系统的结构和参数可能是未知的,因此提出了对其拓扑进行综合的方法。假设通信点(边界点)的数量,以及这些点之间的通信元件(变压器、自耦变压器和电力线)的参数是已知的。本文提出用多边形的形式来表示外部能量系统的等效物,其顶点相互连接,与内部系统的通信线路偏离顶点。为了确定工作中的参数,建议使用解析和优化方法。作为输入信息,电流和电压的PMU设备被使用。提出利用Matlab软件包,特别是Simulink作为等效模型的建模环境。在应急模式和正常模式下,外部等效的某些参数必须与所考虑的通信点处配电网的实际模式相对应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification Parameters Of Equivalent Using PMU For Developing Adaptive Pacs For Distribution Networks With Electricity Sources
Today, there is a tendency to introduce distributed generation, including an increase in the share of renewable energy sources. A significant amount of distributed generation leads to the inefficiency of the traditional approach to calculating the parameters of relay protection operation (offline), and as a result, can lead to improper relay protection and reduce the reliability of power supply.A significant drawback of the existing approach to the calculation of the trigger parameters is the representation of the power system in two modes: maximum and minimum modes.In the conditions of rapidly changing modes of generating electricity and generating loads, which depend, among other things, on weather conditions, in distribution networks with a high proportion of distributed generation, it is necessary to calculate and adjust the relay protection and automation parameters according to the current mode.To solve the problems of adaptability trigger parameters of relay protection in accordance with the current mode, it is proposed to create and maintain up to date a mathematical model of the electrical network, the electrical equipment of which is protected (hereinafter referred to as the internal network). To create an accurate current mathematical model of the electrical network, it is proposed to use the current equivalent of the external power system. Since the configuration and parameters of the external power system may not be known, it is proposed to synthesize its topology. It is assumed that the number of communication points (boundary points), as well as communication elements between these points (transformers, autotransformers and power lines), the parameters of which are known to us. The article proposes to represent the equivalent of an external energy system in the form of a polygon whose vertices are interconnected and communication lines with the internal system depart from the vertices. To identify the parameters in the work, it is proposed to use analytical and optimization methods.As input information, currents and voltages taken by PMU devices are used. It is proposed to use the Matlab software package, in particular, Simulink, as a modeling environment for an equivalent model. Certain parameters of the external equivalent must correspond to the real mode of the distribution network at the considered communication points in emergency and normal modes.
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