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Using the flexibility of EPS as a means of improving the system reliability of power systems in modern conditions

机译:利用EPS的灵活性作为提高现代条件中电力系统系统可靠性的手段

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Scientific research in the field of EPS flexibility has recently been intensified, and this flexibility is considered in a fairly broad setting. It is important to note that the issues of EPS flexibility are not new, but the term “flexibility” was not used to refer to this issue before, although all the main issues were considered within the framework of the topic of system reliability and development of EES, and the issue of continuity of modern research with previous scientific research and existing scientific results is important. Traditionally, one of the aspects of system reliability has been the power security of the EPS, which refers to the ability of the system to withstand sudden disturbances without unintended impacts on electricity consumers. At the same time, the analysis of power security was mainly performed only in the volume of the system-forming power gird of the EPS. For the power systems of the future, the importance of power security increases significantly, but as an analysis of the power security of the system-forming and distribution power grids together. For a number of years, the authors have been engaged in research in the field of mode reliability using the method of calculating EPS modes taking into account discrete and interval characteristics of mode parameters. This method allows us to study the properties of controllability of power systems of the future in the required problem statement.
机译:最近进行了集中化了EPS灵活性领域的科学研究,这种灵活性被认为是相当广阔的环境。值得注意的是,EPS灵活性的问题并不是新的,但之前的“灵活性”术语之前不用于指此问题,尽管在系统可靠性和开发主题框架内被审议了所有主要问题EES,与先前科研和现有科学效果的现代研究的连续性问题很重要。传统上,系统可靠性的一个方面是EPS的动力安全,这是指系统承受突然干扰而不会对电力消费者产生意外影响的能力。与此同时,电力安全性分析主要仅在EPS的系统形成功率态度的体积中进行。对于未来的电力系统,电力安全性的重要性显着增加,而是随着系统形成和分配电网的电力安全性在一起的分析。多年来,作者使用了计算EPS模式的方法,从而考虑了模式参数的离散和间隔特征,从事模式可靠性领域的研究。该方法允许我们研究所需问题陈述中未来电力系统的可控性的性能。

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