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首页> 外文期刊>Power Electronics, IEEE Transactions on >A Cascaded Photovoltaic System Integrating Segmented Energy Storages With Self-Regulating Power Allocation Control and Wide Range Reactive Power Compensation
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A Cascaded Photovoltaic System Integrating Segmented Energy Storages With Self-Regulating Power Allocation Control and Wide Range Reactive Power Compensation

机译:具有分段式储能与自调节功率分配控制和大范围无功补偿功能的级联光伏系统

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摘要

This paper presents a single-phase photovoltaic (PV) system integrating segmented energy storages (SES) using cascaded multilevel inverter. The system is designed to coordinate power allocation among PV, SES, and utility grid, mitigate the overvoltage at the point of common coupling (PCC), and achieve wide range reactive power compensation. The power allocation principle between PV and SES is described by a vector diagram. Accordingly, a sophisticated power allocation strategy is developed to allocate power between PV and SES based on a novel discrete Fourier transform (DFT) phase-locked loop (PLL) method. An appropriate reactive power allocation coefficient (RPAC) is designed to avoid duty cycle saturation and overmodulation so that wide range reactive power compensation and good power quality can be achieved simultaneously. The self-regulating power allocation control system integrating the preferred RPAC and an advanced active power control algorithm is developed to achieve the aforesaid objective. A 3.5-kW single-phase grid-connected cascaded PV system was built and tested at 1.6 kW in the laboratory. Simulation and experimental results are provided to demonstrate the effectiveness of the proposed cascaded PV system integrating SES.
机译:本文提出了一种使用级联多电平逆变器集成分段式储能器(SES)的单相光伏(PV)系统。该系统旨在协调PV,SES和公用电网之间的功率分配,减轻公共耦合点(PCC)的过电压,并实现宽范围的无功功率补偿。 PV和SES之间的功率分配原理由矢量图描述。因此,基于新颖的离散傅里叶变换(DFT)锁相环(PLL)方法,开发了一种复杂的功率分配策略以在PV和SES之间分配功率。设计适当的无功功率分配系数(RPAC)可以避免占空比饱和和过调制,从而可以同时实现宽范围的无功功率补偿和良好的电能质量。为了达到上述目的,开发了一种将优选的RPAC与先进的有功功率控制算法相结合的自调节功率分配控制系统。建造了一个3.5千瓦的单相并网级联光伏系统,并在实验室以1.6千瓦的功率进行了测试。提供仿真和实验结果,以证明所提出的集成SES的级联光伏系统的有效性。

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