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首页> 外文期刊>IEEE Industry Applications Magazine >Solar Energy Used for Grid Connection: A Detailed Assessment Including Frequency Response and Algorithm Comparisons for an Energy Conversion System
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Solar Energy Used for Grid Connection: A Detailed Assessment Including Frequency Response and Algorithm Comparisons for an Energy Conversion System

机译:电网连接太阳能:包括频率响应和能量转换系统算法比较的详细评估

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摘要

To help reduce losses in a distributed generation system, this article proposes a suitable method involving a three-phase multifunctional grid-connected solar energy conversion system (SECS). A two-stage circuit topology is used in this work; the first stage is a boost converter, which serves the purpose of maximum power point tracking (MPPT), and the second stage is a four-leg voltage source converter (VSC), which serves the purpose of feeding extracted energy along with improving power quality in the distribution system. The SECS not only feeds solar photovoltaic (SPV) energy into the grid but also acts to balance grid currents, compensate for reactive power, eliminate harmonics, and mitigate neutral current. A feedforward term for the SPV contribution is used to improve the dynamic response for climatic changes. The PV array voltage is continuously adjusted with the help of a boost converter to achieve MPPT, whereas the dc-link voltage of the VSC is kept constant using a proportional-integral (PI) controller. A second-order generalized integrator quadrature (SOGI-Q)-based algorithm is proposed for the control of a four-leg VSC.
机译:为了帮助减少分布式发电系统中的损失,本文提出了一种适用于三相多功能并网太阳能转换系统(SECS)的方法。本工作使用两级电路拓扑。第一级是升压转换器,用于最大功率点跟踪(MPPT),第二级是四脚电压源转换器(VSC),用于馈送提取的能量并改善电能质量在分配系统中。 SECS不仅将太阳能光伏(SPV)能量馈入电网,而且还可以平衡电网电流,补偿无功功率,消除谐波并减轻中性电流。 SPV贡献的前馈项用于改善对气候变化的动态响应。借助升压转换器连续调节PV阵列电压以实现MPPT,而VSC的直流母线电压使用比例积分(PI)控制器保持恒定。提出了一种基于二阶广义积分器(SOGI-Q)的算法,用于四臂VSC的控制。

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