Performance evaluation of solar-PV integrated hybrid fuzzy-logic controlled multi-functional UPQC for enhancing PQ features

Lingineni Shanmukha Rao, Veera Narasimha Murthy Mogilicharla, Pidatala Prabhakara Sharma, Prathipati Rajkumar
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Abstract

To improve distribution system voltage and current quality, a newly built solar-PV system connected multi-functional universal power quality compensator (MFUPQC) has been extensively used. The proposed MFUPQC mitigates both load and source-side concerns in a three-phase distribution system. Furthermore, as part of the distributed generation scheme, active power from solar PV is injected into the grid or source when solar PV is available. In this context, the proposed MFUPQC was tested in both PQ enhancement and DG integration modes using a feasible control scheme. The proportional-integral controller is used for shunt- voltage-source inverter (VSI) DC-link control, which is not suitable for regulating DC-link voltage at the desired level due to incorrect gain value selection. In this work, an intelligent hybrid-fuzzy-logic DC-link control of MFUPQC evidences the intelligent knowledge base for better regulation of power-quality issues. The suggested hybrid fuzzy-logic controlled MFUPQC device's performance for both power quality (PQ) improvement and DG integration is validated using the MATLAB/Simulink software tool, and simulation results are provided with an appealing comparison analysis.
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太阳能光伏一体化混合模糊逻辑控制多功能 UPQC 的性能评估,以增强 PQ 功能
为改善配电系统的电压和电流质量,一种新型太阳能光伏系统连接多功能通用电能质量补偿器(MFUPQC)得到了广泛应用。所提出的多功能通用电能质量补偿器可减轻三相配电系统中负载和源侧的问题。此外,作为分布式发电方案的一部分,太阳能光伏发电的有功功率会在太阳能光伏发电可用时注入电网或源侧。在这种情况下,采用可行的控制方案,在 PQ 增强和 DG 集成两种模式下对所提出的 MFUPQC 进行了测试。比例积分控制器用于分流电压源逆变器(VSI)直流链路控制,由于增益值选择不正确,该控制器不适合将直流链路电压调节到所需水平。在这项工作中,MFUPQC 的智能混合模糊逻辑直流链路控制证明了智能知识库能更好地调节电能质量问题。使用 MATLAB/Simulink 软件工具验证了所建议的混合模糊逻辑控制 MFUPQC 设备在改善电能质量 (PQ) 和 DG 集成方面的性能,并提供了具有吸引力的比较分析仿真结果。
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