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Effect of phase-locked loop on small-signal perturbation modelling and stability analysis for three-phase LCL-type inverter connected to weak grid

机译:锁相环对弱电网三相LCL型逆变器小信号扰动建模的影响及稳定性分析

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摘要

For three-phase LCL-type inverter connected to weak grid, the bandwidth and dynamics of phase-locked loop (PLL) directly affect small-signal perturbation modelling, which causes the control dq frame of PLL being no longer aligned with the system dq frame of weak grid. Thus, considering the effect of PLL, a small-signal perturbation admittance model is firstly built. Secondly, by the rotating matrix, variables in the system dq frame are transformed into the control dq frame. Then, the interaction between two dq frames is established based on an admittance model in consideration of the PLL, and the inverter output admittance is obtained. Finally, the effect of PLL, grid impedance and LCL-type filter parameters on system stability are analysed. As a conclusion, with an increase in PLL bandwidth and grid impedance, the system stability gradually is decreased, even resulting in the system instability. In addition, the larger the active damping coefficient is, the better the system stability is. While, the increase of filter capacitance and grid-side inductance leads to the decrease of system stability. The conclusions have certain guiding significance and reference value for the design and safe operation of three-phase LCL-type grid-connected inverter. The simulation and experiment verify the validity of theoretical analysis.
机译:对于连接到弱电网的三相LCL型逆变器,锁相环(PLL)的带宽和动态特性直接影响小信号扰动建模,这将导致PLL的控制dq帧不再与系统dq帧对齐的弱网格。因此,考虑到PLL的影响,首先建立了一个小信号扰动导纳模型。其次,通过旋转矩阵,将系统dq帧中的变量转换为控制dq帧。然后,考虑到PLL,基于导纳模型建立两个dq帧之间的交互,并获得反相器输出导纳。最后,分析了PLL,电网阻抗和LCL型滤波器参数对系统稳定性的影响。结论是,随着PLL带宽和电网阻抗的增加,系统稳定性逐渐降低,甚至导致系统不稳定。另外,主动阻尼系数越大,系统稳定性越好。同时,滤波器电容和电网侧电感的增加会导致系统稳定性下降。结论对三相LCL型并网逆变器的设计和安全运行具有一定的指导意义和参考价值。仿真和实验验证了理论分析的正确性。

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