过电流继电器和混合滤波器的分析,包括SFCL在DG配电网中的应用

Q3 Engineering
S. Dhara, P. Sadhu, A. Shrivastav
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引用次数: 0

摘要

近年来,随着技术的进步,电力系统对电能的需求以前所未有的速度增长。随着可再生能源资产的日益重要和分布式发电(DG)效率的全球扩张,电网故障分析对于提高电力系统的效率和弹性至关重要。除故障电流外,配电网中分布式发电机的互联会导致系统谐波增加,也会因反向故障电流导致过流继电器停止运行。然而,由于SFCL被认为在与分布式发电机一起使用时更有效,因此研究由于使用SFCL而产生的保护继电器作为限制配电网故障电流的替代策略是特别必要的。此外,许多电力客户不断要求质量控制,这取决于它提供的电网电力的质量和终端设备的性能。然而,各种外部和内部变量对交付给最终消费者的能源质量有影响。它类似于张力和频率的波动,以及故障。这种电能质量问题会侵蚀设备的长期能力和性能。这些问题应该通过使用混合滤波在谐波减少方面得到解决,以便最大限度地提高消费品和整体设备输出的效率。本研究提出了一种滤波器的控制策略,以消除谐波,并为使用电压元件的过流继电器提供整流方法,以便在配电框架中应用SFCL,以及DG的概念。为了验证建议的方法,使用DG和SFCL的组合模拟了过流继电器的故障。利用MATLAB/SIMULINK环境对所需要的控制策略进行仿真,并查看结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of over current relay and hybrid filter including the utilization of SFCL in a distribution network with DG
Recently, as technology advances, demand for electrical energy has increased at an unprecedented rate in the power system network. With the growing importance of renewable energy assets and the global expansion of distributed generation (DG) efficiency, grid fault analysis is critical for increasing the efficiency and resilience of the power system. Apart from fault current, the interconnection of distributed generators in the distribution network results in an increase in system harmonics, as well as a halt in the operation of the overcurrent relay due to backward directed fault current. However, since the SFCL is considered to be more effective when used with distributed generators, the investigation of a protective relay due to the employment of SFCL is particularly necessary as a substitute strategy for limiting fault current in the distribution network. Additionally, many electrical customers continually require quality control, depending on the quality of the grid power it delivers and the performance of the terminal device. However, a variety of external and internal variables have an effect on the quality of energy delivered to the end consumer. Itos similar to fluctuations in tension and frequency, as well as failures. Such power quality concerns erode equipmentos long-term capability and performance. These concerns should be addressed in terms of harmonic reduction via the use of hybrid filtering in order to maximise the efficacy of consumer goods and overall device output. This study proposes a control strategy for the filter to eliminate harmonics and a rectification method for the overcurrent relay employing voltage components for the purpose of applying SFCL, as well as the notion of DG, in a power distribution framework. To validate the suggested approach, a malfunction with an overcurrent relay was simulated using a combination of DG and SFCL. The MATLAB/SIMULINK environment is used to simulate the desired control strategy and see the result.
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来源期刊
AIMS Electronics and Electrical Engineering
AIMS Electronics and Electrical Engineering Engineering-Control and Systems Engineering
CiteScore
2.40
自引率
0.00%
发文量
19
审稿时长
8 weeks
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