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Robust Vector Control of a Very Weak-Grid-Connected Voltage-Source Converter Considering the Phase-Locked Loop Dynamics

机译:考虑锁相环动态的极弱电网连接电压源转换器的鲁棒矢量控制

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摘要

Conventional vector-controlled voltage-source converters (VSC) suffer from stability and performance problems when integrated into very weak ac grids (high-impedance grids). This is attributed to the increased coupling between the converter and grid dynamics, via the phase-locked loop (PLL), at the very weak-grid condition. In the current literature, the impact of the PLL is usually ignored when the converter controllers are designed. While this approach can be accepted under stiff grid conditions, it yields unmodeled dynamics that destabilize the converter under weak-grid conditions and high-power injection levels. To overcome this limitation, this paper presents a robust vector-controlled VSC that facilitates full converter power injection at weak and very weak-grid conditions (i.e., when the short-circuit capacity ratio is one). To realize the controller, first, a detailed dynamic model for the ac-bus voltage dynamics, including the PLL dynamics, is developed and validated in this paper. Second, the model is used to optimally design a robust ac-bus voltage controller to stabilize the dynamics under operating point variation and grid impedance uncertainty. Because the developed model includes the PLL dynamics, the developed controller inherently stabilizes the negative impact of the PLL on the converter stability. A theoretical analysis and comparative simulation and experimental results are provided to show the effectiveness of the proposed controller.
机译:当集成到非常弱的交流电网(高阻抗电网)中时,传统的矢量控制电压源转换器(VSC)会遇到稳定性和性能问题。这归因于在极弱电网条件下,通过锁相环(PLL),转换器与电网动力学之间的耦合增加。在当前文献中,设计转换器控制器时,通常忽略PLL的影响。尽管在刚性电网条件下可以接受该方法,但它会产生未建模的动力学,从而在弱电网条件和高功率注入水平下使转换器不稳定。为了克服这一限制,本文提出了一种鲁棒的矢量控制VSC,该VSC有助于在弱和非常弱的电网条件下(即,当短路容量比为1时)完全注入转换器功率。为了实现该控制器,首先,开发并验证了交流总线电压动力学的详细动态模型,包括PLL动力学。其次,该模型用于优化设计鲁棒的交流总线电压控制器,以稳定工作点变化和电网阻抗不确定性下的动态。由于开发的模型包含PLL动力学特性,因此开发的控制器固有地稳定了PLL对转换器稳定性的负面影响。理论分析,比较仿真和实验结果表明了该控制器的有效性。

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