Control Strategies for Enhancing Power Quality with Unified Power Quality Conditioner in a Solar-PV Integrated Utility System

Lenin Babu Chilakapati, T. G. Manohar
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Abstract

The electrical utility systems are well-liked as local energy systems because of their capacity to incorporate renewable energy, enhance energy effectiveness and strengthen the resilience of the power system. These benefits do, however, come with specific complications regarding control and power quality (PQ). PQ within a utility system is paramount to ensure the appropriate operation of connected devices and the well-being of the overall system. As a result, both voltage quality & current quality are significant. Control strategies in conjunction with cutting-edge power electronics devices (PED) offer a solid framework to handle PQ challenges. Hence, this paper’s proposed work discusses the application of a Solar-Photovoltaic (PV) fed Unified Power Quality Conditioner (UPQC) for power quality enhancement towards the supply grid network. The Solar-PV fed UPQC enhances PQ and maximizes solar energy utilisation, leading to an eco-friendly and cost-effective solution while injecting clean, renewable energy into the grid. In this paper, the control strategies for UPQC are based primarily on the Adaptive Leaky Least Mean Square (AL_LMS) algorithm as compared with the Synchronous Reference Frame (SRF) based theory for switching of series and shunt active converters of UPQC. This AL_LMS approach extracts reference signals to switch UPQC’s shunt and series voltage source converters (VSCs) by iteratively updating the weights. Thus, the control strategy applied to Solar-PV fed UPQC mitigates voltage problems like voltage sag and swell, current harmonic distortions and other PQ issues. The work is done in MATLAB/ Simulation software and simulation outcomes show the effectiveness of Solar-PV fed UPQC in improving power quality by maintaining within the IEEE-519 Standards.
在太阳能光伏一体化公用事业系统中使用统一电能质量调节器提高电能质量的控制策略
电力公用事业系统作为本地能源系统备受青睐,因为它们能够整合可再生能源、提高能源效率并增强电力系统的复原力。然而,这些优势也带来了控制和电能质量(PQ)方面的具体问题。电力系统中的电能质量对确保连接设备的正常运行和整个系统的健康至关重要。因此,电压质量和电流质量都非常重要。与尖端电力电子设备(PED)相结合的控制策略为应对 PQ 挑战提供了坚实的框架。因此,本文提出的工作讨论了太阳能光伏(PV)馈电统一电能质量调节器(UPQC)的应用,以提高电网网络的电能质量。太阳能-光伏馈电统一电能质量调节器可提高电能质量,最大限度地利用太阳能,从而在向电网注入清洁、可再生能源的同时,提供一种生态友好、经济高效的解决方案。在本文中,UPQC 的控制策略主要基于自适应最小均方差(AL_LMS)算法,与基于同步参考框架(SRF)理论的 UPQC 串联和并联有源转换器开关相比。这种 AL_LMS 方法通过迭代更新权重来提取参考信号,以切换 UPQC 的并联和串联电压源转换器 (VSC)。因此,应用于太阳能光伏馈电 UPQC 的控制策略可以缓解电压问题,如电压下陷和电压膨胀、电流谐波畸变和其他 PQ 问题。这项工作是在 MATLAB/仿真软件中完成的,仿真结果表明,太阳能光伏馈电 UPQC 在改善电能质量方面非常有效,符合 IEEE-519 标准。
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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