Development of a Tool for Automated Verification of a Synchronous Generator Models Together with Turbine and Excitation System Using PMU Technology

V. R. Rafikov, Y. Tepikin, F. N. Gaidamakin, D. Dubinin, I. Morozov
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Abstract

Successful solution of problems aimed at improving the reliability of electric power systems operation and ensuring their stability depends on the correctness of electric power facilities models. An assessment of model response conformity to the actual transient in the power system can be given in the process of verifying this model using measurements of disturbance recorder or phasor measurement units. The development of the synchrophasor technology increases the observability of dynamic processes and opens up new prospects in the field of electric power systems and their elements models verification.The article is devoted to the development of a tool for automated verification of synchronous generator models together with a turbine, its control device and an excitation system. This article analyzes the existing approaches to verification and proposes a concept based on power system state replay using real synchrophasor data. The structure of the tool is described; the mathematical model of the synchronous generator is given. The article presents the results of testing the implemented tool on simulated data. Also, with the help of this tool, the turbogenerators verification installed at the power plants of the Russian Unified Energy System was carried out, through real synchrophasor data in transient.
基于PMU技术的同步发电机、汽轮机和励磁系统模型自动验证工具的开发
提高电力系统运行可靠性和保证系统稳定性的问题能否成功解决,取决于电力设施模型的正确性。在利用扰动记录仪或相量测量装置对模型进行验证的过程中,可以给出模型响应是否符合电力系统实际暂态的评估。同步相量技术的发展增加了动态过程的可观测性,为电力系统及其元件模型验证领域开辟了新的前景。本文介绍了一种同步发电机模型自动验证工具的开发,该工具包括水轮机、水轮机控制装置和励磁系统。本文在分析现有验证方法的基础上,提出了一种基于实际同步相量数据的电力系统状态重放的概念。介绍了刀具的结构;给出了同步发电机的数学模型。本文给出了在仿真数据上对所实现工具的测试结果。同时,利用该工具对安装在俄罗斯统一能源系统发电厂的汽轮发电机进行了瞬态同步数据验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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