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首页> 外文期刊>Simulation modelling practice and theory: International journal of the Federation of European Simulation Societies >Investigations of an improved PV system topology using multilevel boost converter and line commutated inverter with solutions to grid issues
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Investigations of an improved PV system topology using multilevel boost converter and line commutated inverter with solutions to grid issues

机译:使用多级升压转换器和线路换向逆变器改进光伏系统拓扑并解决电网问题的研究

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摘要

A photovoltaic (PV) system using multilevel boost converter (MBC) and line commutated inverter (LCI), operating in both grid-connected mode and stand-alone mode has been analysed. This proposed system extracts and feeds the maximum power to a single phase utility grid and stand-alone system simultaneously. The duty ratio of the MBC is estimated from the theoretical analysis of the proposed system, for extracting maximum power from PV array. The proposed system tracks the maximum power with the determined duty ratio which remains the same for all irradiations, for a fixed firing angle of LCI. The flexibility of supplying required proportion of extracted power to grid and stand-alone load and the elimination of a separate MPPT controller are the major benefits of the proposed system under normal grid conditions. In addition to it, the grid issues like voltage swell, blackout and brownout are considered and necessary remedial measures have been taken in the proposed system. Based on the issues, either the firing angle of LCI is adjusted or LCI is disconnected and replaced by a battery. Simulation studies have been carried out and the dynamic response of the system is observed. A laboratory prototype is built and experimental investigations have also been carried out. The theoretical analysis, simulation and experimental results are found to be closely associating with each other proving the efficacy of the proposed configuration.
机译:已经分析了使用多级升压转换器(MBC)和线路换向逆变器(LCI)的光伏(PV)系统,该系统以并网模式和独立模式运行。该拟议系统可提取最大功率并将其同时馈送到单相公用电网和独立系统。 MBC的占空比是从提出的系统的理论分析中估算出来的,用于从PV阵列中提取最大功率。对于固定的LCI发射角度,建议的系统以确定的占空比跟踪最大功率,该占空比对于所有辐照保持相同。在正常电网条件下,所提议系统的主要优点是可以灵活地为电网和独立负载提供所需比例的提取功率,并且省去了单独的MPPT控制器。除此之外,还考虑了电网问题,例如电压骤升,停电和掉电,并在建议的系统中采取了必要的补救措施。基于这些问题,可以调整LCI的点火角度,或者断开LCI并用电池更换。已经进行了仿真研究,并观察了系统的动态响应。建立了实验室原型,并进行了实验研究。理论分析,仿真和实验结果被发现彼此密切相关,证明了所提出的配置的有效性。

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