Department of Electrical Engineering, College of Engineering in Wadi Alddawasir, Prince Sattam Bin Abdulaziz University, Wadi Alddawasir, Saudi Arabia.
Department of Electrical Engineering, Institute of Aviation Engineering and Technology, Giza, Egypt.
PLoS One. 2024 May 10;19(5):e0303207. doi: 10.1371/journal.pone.0303207. eCollection 2024.
This paper introduces a novel and improved double-resistor damped double-tuned passive power filter (DR-DDTF), designed using multi-objective optimization algorithms to mitigate harmonics and increase the hosting capacity of distribution systems with distributed energy resources. Although four different topologies of single-resistor damped double-tuned filters (DDTFs) have been studied before in the literature, the effectiveness of two different DR-DDTF configurations has not been examined. This work redresses this gap by demonstrating that via comprehensive simulations on two power systems, DR-DDTF provides better harmonic suppression and resonance mitigation than single-resistor alternatives. When it comes to optimizing the DR-DDTF for maximum hosting capacity and minimum system active power losses, the multi-objective artificial hummingbird outperformed six other algorithms in the benchmark. To allow for higher penetration of distributed generation without requiring grid upgrades, this newly developed harmonic mitigation filter provides a good alternative.
本文介绍了一种新颖且改进的双电阻阻尼双调谐无源功率滤波器(DR-DDTF),该滤波器采用多目标优化算法设计,旨在减轻谐波并提高具有分布式能源的配电系统的承载能力。尽管文献中之前已经研究了四种不同拓扑结构的单电阻阻尼双调谐滤波器(DDTF),但两种不同的 DR-DDTF 配置的有效性尚未得到检验。本工作通过在两个电力系统上进行全面仿真,证明了 DR-DDTF 比单电阻替代品具有更好的谐波抑制和共振缓解效果,从而弥补了这一空白。在针对最大承载能力和最小系统有功功率损耗进行优化时,多目标人工蜂鸟算法在基准测试中优于其他六种算法。为了允许在不进行电网升级的情况下更高地渗透分布式发电,这种新开发的谐波抑制滤波器是一种很好的替代方案。