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Fault analysis of accurate PV connected system against dynamic fast solar radiation fluctuation

机译:精确的光伏连接系统针对动态太阳快速辐射波动的故障分析

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Renewable energies integrated systems protection issues need proper fault analysis investigation. Based on simulated solar radiation fluctuation the case of accurate 6.5 kV dc photovoltaic (PV) connected system is discussed in this paper. The detailed control strategy is PV side control and inverter side control. The synchronous rotating frame (SRF) method is applied to design a current control strategy to control three-phase voltage source inverter (VSI) using park transform. Maximum power point tracking (MPPT), voltage control, phase locked loop (PLL), sinusoidal pulse width modulation (SPWM), LCL filters, and pulse width modulation (PWM) techniques are implemented in PSCAD software based simulation. The grid has 110 kV and 100 MVA power rating connected to the 6.5 kV PV farm through two step-up delta-star transformers making use of transmission lines. Symmetrical and asymmetrical faults are analyzed during high and low levels short time and dynamic irradiation fluctuation to discuss relevant PV system variables waveforms. These results could be needed to further investigate protection problems and related issues in high PV penetration systems suffering from unpredictable nature of solar radiation.
机译:可再生能源集成系统保护问题需要适当的故障分析调查。基于模拟的太阳辐射波动,本文讨论了精确的6.5 kV直流光伏(PV)连接系统的情况。详细的控制策略是PV侧控制和逆变器侧控制。应用同步旋转框架(SRF)方法设计电流控制策略,以利用Park变换控制三相电压源逆变器(VSI)。在基于PSCAD软件的仿真中实现了最大功率点跟踪(MPPT),电压控制,锁相环(PLL),正弦脉冲宽度调制(SPWM),LCL滤波器和脉冲宽度调制(PWM)技术。电网具有110 kV和100 MVA的额定功率,通过两个使用传输线的升压三角星形变压器连接到6.5 kV光伏电站。在高和低电平短时间和动态辐照波动期间分析对称和非对称故障,以讨论相关的光伏系统变量波形。需要这些结果来进一步研究遭受太阳辐射无法预测的高PV渗透系统中的保护问题和相关问题。

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