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Single-phase single-stage multifunctional grid interfaced solar photo-voltaic system under abnormal grid conditions

机译:异常电网条件下的单相单级多功能并网太阳能光伏系统

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摘要

This study deals with a single-phase single-stage multifunctional grid interfaced solar photo-voltaic (SPV) system. The proposed SPV system is multifunctional as it has MPPT (maximum power point tracking) and it provides harmonics elimination, reactive power compensation and feeding SPV energy into the grid at unity power factor. The PV array is connected at the DC link of voltage source converter. The MPPT controller estimates reference PV voltage and a proportional integral controller is used to maintain the PV string voltage to the reference value. Feed-forward terms are used for SPV array and load components for fast dynamic response. The performance of the system is analysed under abnormal grid (sudden sag and swell) conditions. Simulation studies are performed on MATLAB-based platform. Simulation results are verified experimentally on a developed SPV system. Under steady-state operating conditions, the total harmonic distortion of grid voltage and currents are found well under IEEE-519 standard. A wide range of simulation and experimental results are presented to demonstrate all the features of the proposed SPV system.
机译:本研究涉及单相单级多功能并网太阳能光伏(SPV)系统。拟议中的SPV系统具有MPPT(最大功率点跟踪)功能,并且具有谐波消除功能,无功补偿功能以及将SPV能量以统一功率因数馈入电网的功能,因此具有多功能性。 PV阵列连接在电压源转换器的DC链路上。 MPPT控制器估算参考PV电压,并且使用比例积分控制器将PV灯串电压维持在参考值。前馈项用于SPV阵列和负载组件,以实现快速动态响应。在异常电网(骤降和骤升)情况下分析系统的性能。仿真研究是在基于MATLAB的平台上进行的。仿真结果在开发的SPV系统上进行了实验验证。在稳态工作条件下,可以在IEEE-519标准下很好地发现电网电压和电流的总谐波失真。提出了广泛的仿真和实验结果,以证明所提出的SPV系统的所有功能。

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