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Fault Detection and Diagnosis for Photovoltaic Array Under Grid Connected Using Support Vector Machine

机译:电网下电网下光伏阵列的故障检测与诊断

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Abnormal conditions in a solar photovoltaic (PV) array whether permanent or temporary faults lead to lessening the overall PV system efficiency and might lead to a fire hazard. As a result, it is compulsory to detect and diagnose faults in the PV array in order to ameliorate system reliability, safety, and efficiency. This paper proposes an automatic Fault Detection and Diagnosis (FDD) for the PV array under a grid-connected PV system operation based on the Support Vector Machine (SVM). The PV system utilizes two power processing stages consist of a DC-DC boost converter, followed by the three-phase, two-level, Voltage Source Inverter (VSI). The DC-DC boost converter is used to draw out the maximum PV array power and boosting the PV array output voltage. The Fuzzy Logic Control (FLC) based on the Maximum Power Point Tracking (MPPT) is applied to fine-tune the duty cycle for the DC-DC boost converter to realize maximum power. The VSI is used to inject a sinusoidal current into the grid through the LCL filter. The control strategy of the VSI consists of two control loops, the DC-link voltage and the AC-current control loop. The proposed system is simulated using MATLAB/Simulink? to investigate system performance.
机译:太阳能光伏(PV)阵列中的异常条件是永久性的或临时故障导致整体光伏系统效率降低,可能导致火灾危险。结果,强制性地检测和诊断PV阵列中的故障,以便改善系统可靠性,安全性和效率。本文提出了基于支持向量机(SVM)的网格连接的PV系统操作下的PV阵列的自动故障检测和诊断(FDD)。 PV系统采用两个功率处理级,由DC-DC升压转换器组成,其次是三相,双电压源逆变器(VSI)。 DC-DC升压转换器用于绘制最大PV阵列功率并提高PV阵列输出电压。基于最大功率点跟踪(MPPT)的模糊逻辑控制(FLC)应用于微调DC-DC升压转换器的占空比,以实现最大功率。 VSI用于通过LCL滤波器将正弦电流注入到网格中。 VSI的控制策略包括两个控制环,DC-LINK电压和交流控制回路。使用MATLAB / SIMULINK模拟所提出的系统?调查系统性能。

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