Latvian electrical power system stability's analysis taking into account new development strategy until 2025

I. Zicmane, K. Berzina, Aleksejs Soboļevskis, S. Kovaļenko
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引用次数: 3

Abstract

Energy is one of the sectors directly affecting the economic growth and forming a significant part of overall expenses in several industry branches, especially in manufacturing. The development of the energy sector requires significant investments which can only be attracted in a stable and predictable investment environment. Therefore, Latvian energy sector is being planned in a long-term both globally and at the European Union (EU) level. During the last two decades, increase in electricity demand and environmental concern resulted in fast growth of power production from renewable sources, where wind energy is one of the most efficient alternatives. The second important moment is the Baltic power system's development strategy, with the breakdown of continental Europe from the energy circle of BRELL until 2025. The purpose of this paper is devoted to the evaluation sufficiency of the taken measures, taking into account the integration of a large wind farm in the Latvian Electric Power System (EPS) in terms of stability. The methodology proposed in the paper can be applied for the detection of network parameters that are most vulnerable to perturbations such as a voltage drop, as well as defining the relations of said parameters with the EPS parameters, and using this information for the consequent improvement of behavioral EPS properties in general. Thus, knowing the location of sensors, it is possible to determine and control the nodes that undergo the biggest fluctuations of operational parameters during the disturbances.
考虑到2025年新发展战略的拉脱维亚电力系统稳定性分析
能源是直接影响经济增长的部门之一,在几个工业部门中,特别是在制造业中,能源是总开支的重要组成部分。能源部门的发展需要大量投资,只有在稳定和可预测的投资环境中才能吸引到这些投资。因此,拉脱维亚能源部门正在全球和欧洲联盟(EU)一级进行长期规划。在过去二十年中,电力需求的增加和对环境的关注导致可再生能源发电的快速增长,其中风能是最有效的替代能源之一。第二个重要时刻是波罗的海电力系统的发展战略,随着欧洲大陆从BRELL能源圈的瓦解,直到2025年。考虑到拉脱维亚电力系统(EPS)中大型风电场的稳定性,本文的目的是专门评估所采取措施的充分性。本文提出的方法可用于检测最容易受到电压降等扰动的网络参数,以及定义所述参数与EPS参数的关系,并使用此信息来改进一般的EPS行为特性。因此,知道传感器的位置,就有可能确定和控制在干扰期间运行参数波动最大的节点。
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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