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Stability Analysis of the Proportional-Resonant Controller in Single Phase Converters

机译:单相转换器中比例谐振控制器的稳定性分析

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The proportional-resonant control (PR-control) is a simple and efficient control, which has the ability to eliminate error in linear time varying signals. This type of control is typically used in applications such as the integration of solar panels, energy storage and electric vehicles among others. Despite having non-linear dynamics, the analysis of the PR-control is usually performed using linear systems theory. This paper proposes a non-linear stability analysis based on Lyapunov theory which formalizes the main stability results on these controls that are standard in industrial applications. The proposed approach is general and independent of the structure of the phase-locked loop which is considered as a vanishing perturbation. This approach allows a better understanding of the control from a non-linear perspective. In addition, it gives an exact criteria for tuning the parameters of the controller. Numerical simulation results in a wide range of scenarios complement the analysis and validate them.
机译:比例谐振控制(PR控制)是一种简单且有效的控制,其能够消除线性时间变化信号中的误差。这种类型的控制通常用于太阳能电池板,能量存储和电动车间的应用中的应用中。尽管具有非线性动力学,但通常使用线性系统理论进行PR控制的分析。本文提出了基于Lyapunov理论的非线性稳定性分析,该理论将主要稳定性的主要稳定性结果正式形成为工业应用标准的这些控制。所提出的方法是一般的,并且独立于锁相环的结构,被认为是消失的扰动。这种方法允许更好地了解来自非线性透视的控制。此外,它还提供了调整控制器参数的精确标准。数值模拟导致各种场景补充分析并验证它们。

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