Pv Integrated Cuk Converter For UPQC Applications With Power Quality Improvement Using Intelligent Control Techniques

M. Venkateswarlu, B. Pakkiraiah
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Abstract

The application of a Photovoltaic (PV) integrated Unified Power Quality Conditioner (UPQC) to reduce harmonics generated by non-linear loads and enhance grid Power Quality (PQ) is investigated in this study. The UPQC is made up of a series and shunt compensator, which are interfaced sequentially to the common dc-link. In addition to minimization of load current harmonics, the shunt compensator also draws electricity from the PV array. The operation of the UPQC is strengthened further by obtaining load active current component using dq. The PQ issues on the side of the grid in the form of voltage sag/swell is balanced using the series compensator. The proposed approach offers the combined advantages of power quality enhancement and sustainable power generation. For maximum power extraction from PV modules, a Cascaded Fuzzy based Maximum Power Point Tracking (MPPT) is applied to a Cuk converter. The Cuk converter is an efficient high gain converter with continuous input current along with voltage boosting and bucking capability. The Cascaded fuzzy based MPPT approach complements the proposed control approach with its quick and accurate tracking performance. The dynamic and steady state performance of PV integrated UPQC are assessed using Matlab simulations.
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采用智能控制技术改善电能质量的UPQC应用Pv集成Cuk转换器
研究了光伏一体化统一电能质量调节器(UPQC)在降低非线性负荷谐波、提高电网电能质量方面的应用。UPQC由串联和并联补偿器组成,它们依次连接到公共直流链路。除了最小化负载电流谐波外,并联补偿器还从光伏阵列获取电力。采用dq法获得负载有功电流分量,进一步加强了UPQC的运行能力。采用串联补偿器对电网侧电压跌落/膨胀形式的PQ问题进行了平衡。所提出的方法具有提高电能质量和可持续发电的综合优势。为了从光伏组件中提取最大功率,将基于级联模糊的最大功率点跟踪(MPPT)应用于Cuk变流器。Cuk变换器是一种高效的高增益变换器,具有连续输入电流以及升压和抗压能力。基于级联模糊的MPPT方法以其快速准确的跟踪性能补充了所提出的控制方法。通过Matlab仿真对PV集成UPQC的动态和稳态性能进行了评估。
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