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Stability analysis of digitally controlled LCL-type grid-connected inverter considering the delay effect

机译:考虑延迟效应的数控LCL型并网逆变器的稳定性分析

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Owing to LCLfilter resonance, a single loop may not be adequate to stabilise the digitally controlled LCL-type grid-connected inverter, thus the capacitor-current-feedback active damping is usually introduced. However, the computation and pulse-width modulation delays of the digitally controlled system significantly affect system stability and damping performance. Moreover, the delay varies when the duty-ratio update instant and sampling instant are changed. In this study, the Nyquist diagram is used to investigate the system stability taking into consideration the delay effect in the continuous domain. Then, the general conclusions and formulas can be drawn: if the LCL-filter resonance is above the critical frequency, the Nyquist diagram of single loop may not encircle the critical point, and therefore stabilise the system; and if it is below, a damping strategy is required. However, given the delay effect, the active damping loop may be unstable, and two unstable open-loop poles will be generated in the grid current loop under certain conditions. Then its Nyquist diagram should encircle the critical point to ensure the system is stable. Furthermore, the restriction of the cross-over frequency discussed. Experimental results based on a 5 kW prototype have been provided to verify the theoretical analysis.
机译:由于LCL滤波器的谐振,单个环路可能不足以稳定数控LCL型并网逆变器,因此通常会引入电容器电流反馈有源阻尼。但是,数控系统的计算和脉宽调制延迟会严重影响系统的稳定性和阻尼性能。此外,当占空比更新时刻和采样时刻改变时,延迟也变化。在这项研究中,奈奎斯特图用于考虑连续域中的延迟效应来研究系统稳定性。然后,可以得出一般的结论和公式:如果LCL滤波器谐振高于临界频率,则单回路的奈奎斯特图可能不会围绕临界点,从而使系统稳定。如果低于此值,则需要采用阻尼策略。但是,考虑到延迟效应,有源阻尼环路可能不稳定,并且在某些条件下,电网电流环路中会产生两个不稳定的开环极。然后,其奈奎斯特图应围绕临界点以确保系统稳定。此外,讨论了交叉频率的限制。提供了基于5 kW原型的实验结果,以验证理论分析。

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