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Adaptive Method for Control Tuning of Grid-Connected Inverter Based on Grid Measurements During Start-Up

机译:开机时基于电网测量的并网逆变器自适应控制方法

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As the share of grid-connected converters increases, potential stability issues in the grid interface of the converters are emphasized. Impedance-based stability criterion can be used to assess the stability of the interface accurately, and the grid conditions should be considered in control design of the converter. However, the grid impedance is often an unknown parameter, and thus, adaptive control is a favorable method for addressing the uncertainties in the control design. This work presents an algorithm, in which the full-order grid impedance is measured during the start-up of the device, and control bandwidth of phase-locked loop and grid-voltage feedforward gains are adjusted to optimize sensitivity function in the grid interface, based on generalized Nyquist criterion. The method can ensure robust control in weak grid conditions, while still achieving good control performance in strong grids. The method is verified with power hardware-in-the-loop experiments with a kW-scale grid-connected three-phase inverter.
机译:随着并网转换器的份额增加,强调了转换器的电网接口中的潜在稳定性问题。基于阻抗的稳定性标准可用于准确评估接口的稳定性,并且在转换器的控制设计中应考虑电网条件。然而,电网阻抗通常是未知参数,因此,自适应控制是解决控制设计中不确定性的有利方法。这项工作提出了一种算法,其中在设备启动期间测量全阶栅极阻抗,并调整锁相环的控制带宽和栅极电压前馈增益,以优化栅极接口中的灵敏度功能,基于广义奈奎斯特准则。该方法可以确保在弱电网条件下的鲁棒控制,同时仍然在强电网中实现良好的控制性能。通过kW级并网三相逆变器的电源硬件在环实验验证了该方法。

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