在中压电网发展中运用创新工具,以串联稳压器为例进行研究

Q4 Energy
B. Tőzsér, I. Táczi, A. Torok
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引用次数: 0

摘要

可再生能源技术的快速进步和欧盟的能源政策以及国家能源战略导致间歇性可再生能源发电厂的数量迅速增加。这就给配电系统的运行带来了新的挑战。为了有效地运行该系统,必须考虑使用创新技术,因为传统的网络发展战略并不总是能为问题提供最佳解决方案。本文以串联稳压器为例,分析了大型风力发电对中压系统的影响,并提出了解决问题的方法。发电和负荷的剖面差异导致线路末端的住宅变压器电压波动较大,超过8%。为了评估站点的电压分布,进行了时间序列对称负载流计算。在对环境进行彻底分析后,在系统的3个不同节点上实现了串行稳压装置,并使用统计工具进行了放置分析。结果表明,即使当器件远离这些节点时,线路末端的电压波动也降低了3%;通过最佳放置,该装置可以将线路上最大的电压波动减半。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The use of innovative tools in the medium voltage grid development, a case study of series voltage regulator
The rapid technological improvements concerning the renewable energy sources and the energy policy of the European Union, and the National Energy Strategy are leading to a rapid increase in the number of intermittent renewable power plants. Thus, new challenges emerge in the operation of the distribution system. To operate the system efficiently, the use of innovative technologies must be considered, because conventional network development strategies cannot always provide an optimal solution for the problem. This paper analyses the effects of largescale wind power generation on a medium voltage system and a solution of the problems faced through a case study of a serial voltage regulator. The difference between the profiles of generation and loads causes the residential transformers at the end of the line to encounter large, more than 8% voltage fluctuation. To assess the site’s voltage profile, time series symmetrical load flow calculations were performed. After the thorough analysis of the circumstances a serial voltage regulator device was implemented at 3 different nodes of the system and a placement analysis was carried out with statistical tools. The results showed a 3% decrease in the voltage fluctuation at the end of the line even when the device was far from these nodes; and with an optimal placement, the device could halve the largest voltage fluctuation on the line.
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来源期刊
Renewable Energy and Power Quality Journal
Renewable Energy and Power Quality Journal Energy-Energy Engineering and Power Technology
CiteScore
0.70
自引率
0.00%
发文量
147
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