变电站数字保护与自动控制系统自动化测试技术的开发

A. Voloshin, S. Nukhulov
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引用次数: 0

摘要

数字技术在变电站保护和自动化控制系统(PACS)中的应用越来越多,使得越来越多复杂和非标准的技术解决方案得以实施。这导致开发的PACS的表示形式变得复杂,最终使分析和控制它们以符合当前的规则和条例变得更加困难。显然,在这种情况下,如果设计方案没有使用电网的数字模型进行初步的全面测试,可能会导致调试周期的显着增加,但更重要的是,在开发过程中增加了PACS错误操作的风险。目前,进行此类测试是一个相当耗时且技术复杂的过程,包括建立电力系统碎片模型并与实际PACS设备连接,形成一组测试场景,进行测试并对测试结果进行后续处理。此外,随着变电站数字化PACS设备数量的增加和“数字化”程度的提高,为分析设备和整个系统的正确运行,需要进行的测试数量也在增加,测试方法也变得更加复杂。修改电网模型运行参数,定期调整PACS设备设置,增加新的测试场景,导致需要多次重复测试。PACS硬件和软件的当前发展水平以及其执行普遍性的新兴全球趋势,以及数字技术使用的扩展,为根据IEC 61850实施的PACS测试过程的自动化提供了新的机会,包括测试设计解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a Technique for Automated Testing of Digital Protection and Automatic Control System of Substation
The growing use of digital technologies in protection and automation control system (PACS) of substations allows the implementation of more and more complex and non-standard technical solutions. This leads to a complication of the form of presentation of the developed PACS, which ultimately makes it much more difficult to analyze and control them for compliance with the current rules and regulations. Obviously, in such conditions, if designing solutions are used without preliminary comprehensive testing using digital models of an electric power network, can lead to a significant increase in the period for commissioning, but more importantly, increases the risk of incorrect operation of PACS while exploitation.At present, carrying out such tests is a rather time-consuming and technically complex process, which includes creating a model of a power system fragment and connecting real PACS devices to it, forming a set of test scenarios, conducting tests and subsequent processing of test results.In addition, with an increase in the number of digital PACS devices at a substation and an increase in the degree of its "digitization", the number of tests that need to be performed to analyze the correct operation of the devices and the system as a whole increases, and the methods for conducting tests become more complicated. Making changes to the operating parameters of the electric power network model, regularly adjusting the settings of the PACS devices, as well as adding new test scenarios, lead to the need to repeat the tests many times.The current level of development of the PACS hardware and software and the emerging global trends towards the universality of their execution, along with the expansion of the use of digital technologies, open up new opportunities for automating the processes of testing the PACS implemented according to IEC 61850, including testing a designing solutions.
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