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An Adjustable DC Link Voltage-Based Control of Multifunctional Grid Interfaced Solar PV System

机译:多功能并网太阳能光伏系统的可调节直流母线电压控制

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摘要

This paper presents a grid supported solar energy conversion system with an adjustable dc link voltage for common point of interconnection (CP) voltage variations. A two-stage circuit topology is proposed, wherein the first stage is a boost converter, which serves for maximum power point tracking, and the second stage is a grid tied voltage source converter (VSC), which not only feeds extracted solar photovoltaic (PV) energy into the three-phase distribution system but also serves for harmonics mitigation, reactive power compensation, and grid current balancing. An interweaved double-frequency second-order generalized integrator-based control algorithm is proposed for control of this multifunctional VSC, which possesses the feature of good steady-state performance along with fast dynamic response even under sudden load changes at CPI. Moreover, a feed-forward term for the solar PV contribution is used to enhance the dynamic response for climatic changes and CPI voltage variation. An adjustable dc link voltage structure is used to accommodate CPI voltage variation, which helps in reduction of losses in the power circuit. To implement adjustable dc link voltage structure, the reference dc link voltage is adjusted with variation in CPI voltage in real time. A proportional-integral controller is used to regulate dc link voltage to set reference value. A wide range of experimental results are shown to demonstrate the features of the proposed system. The total harmonic distortion of grid current has been found well under IEEE-519 standard even under nonlinear loads at CPI.
机译:本文介绍了一个具有网格支持的太阳能转换系统,该系统具有可调节的直流链路电压,以实现公共互连点(CP)电压变化。提出了两级电路拓扑,其中第一级是升压转换器,用于最大功率点跟踪,第二级是并网电压源转换器(VSC),它不仅为提取的太阳能光伏(PV)供电)的能量输入到三相配电系统中,但也可用于谐波的缓解,无功功率补偿和电网电流平衡。提出了一种基于交织双频二阶广义积分器的控制算法,以控制该多功能VSC。该算法具有良好的稳态性能,即使在CPI突然变化时也具有快速的动态响应。此外,太阳能光伏贡献值的前馈术语用于增强气候变化和CPI电压变化的动态响应。可调直流链路电压结构用于适应CPI电压变化,这有助于减少电源电路中的损耗。为了实现可调节的直流母线电压结构,可通过CPI电压的实时变化来调整参考直流母线电压。比例积分控制器用于调节直流母线电压以设置参考值。大量的实验结果表明了该系统的特点。即使在CPI的非线性负载下,也已经在IEEE-519标准下很好地发现了电网电流的总谐波失真。

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