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Parallel operation of photovoltaic power conditioning system modules for large-scale photovoltaic power generation

机译:用于大规模光伏发电的光伏功率调节系统模块的并行运行

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In this study, parallel operation of photovoltaic (PV) power conditioning system (PCS) modules for large-scale PV power generation is proposed. This system consists of PCS modules that are connected in parallel and share the dc-link voltage. PCS modules can be easily connected in parallel for high-power extension and independent control of the PCS module is achieved. Since this system does not use communication lines among the PCS modules, sensing signal noise and the mutual interference can be neglected. In addition, the number of PCS modules operating simultaneously can be controlled in accordance with the irradiance. Thus, system efficiency can be maximised and PCS module life time is extended. Further, the system has high availability since it has N + 1 redundancy that is achieved by increasing the power capacity of PCS modules through the use of an additional PCS module. A prototype of the proposed system is implemented at a rated power of 500 kW. Experimental results for parallel operation of PCS modules show the feasibility of the proposed control.
机译:在这项研究中,提出了用于大规模光伏发电的光伏(PV)功率调节系统(PCS)模块的并行操作。该系统由并联连接并共享直流链路电压的PCS模块组成。 PCS模块可以轻松地并行连接以进行大功率扩展,并且可以独立控制PCS模块。由于该系统不使用PCS模块之间的通信线路,因此可以忽略感测信号噪声和相互干扰。另外,可以根据辐照度控制同时运行的PCS模块的数量。因此,可以最大程度地提高系统效率,并延长PCS模块的使用寿命。此外,由于具有N + 1冗余,因此该系统具有高可用性,该冗余是通过使用附加PCS模块来增加PCS模块的功率容量而实现的。拟议系统的原型以500 kW的额定功率实施。 PCS模块并行操作的实验结果表明了所提出的控制的可行性。

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    《Power Electronics, IET》 |2014年第2期|406-417|共12页
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