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Control and Stability Analysis of Modular Multilevel Converter Under Low-Frequency Operation

机译:模块化多电平变频器低频运行的控制与稳定性分析

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The modular multilevel converter (MMC) is increasingly becoming popular for multi-MW drive systems. One of the main technical challenges associated with the operation of MMC for adjustable-speed drives is the large magnitude of submodule (SM) capacitor voltage ripple under constant-torque low-speed operation. This paper proposes two new control strategies to reduce the magnitude of the SM capacitor voltage ripple in the MMC-based adjustable-speed drive systems under constant-torque low-speed operation. The proposed control strategies are based on injecting a square-wave common-mode voltage at the ac-side and a circulating current within the phase-legs to attenuate the low-frequency components of the SM capacitor voltages. The frequency spectrum of the injected circulating current consists of components in the vicinity of either the common-mode frequency or the common-mode frequency and third harmonic of the common-mode frequency. This paper also provides: i) a theoretical comparison of the proposed control strategies with the existing ones; ii) a controller design methodology to systematically determine the controller gains of the proposed control strategies; and iii) a theoretical proof of stability of the proposed control strategies and their design methodology based on Lyapunov analysis of singularly perturbed nonlinear non-autonomous systems. A set of experimental results for various case studies on a laboratory-scale prototype are provided to support the theoretical proof of stability of the proposed control strategies and their design methodology, and to show the superior performance of the proposed strategies over the existing strategy.
机译:模块化多电平转换器(MMC)在多兆瓦驱动系统中越来越受欢迎。与MMC用于可调速驱动器相关的主要技术挑战之一是恒转矩低速运行下子模块(SM)电容器电压纹波的幅度很大。本文提出了两种新的控制策略,以降低基于MMC的变速驱动系统在恒转矩低速运行下的SM电容器电压纹波的幅度。所提出的控制策略是基于在交流侧注入方波共模电压以及在相脚内注入循环电流以衰减SM电容器电压的低频分量。注入的循环电流的频谱由共模频率或共模频率附近的分量以及共模频率的三次谐波组成。本文还提供:i)所提出的控制策略与现有策略的理论比较; ii)一种控制器设计方法,可系统地确定所提议控制策略的控制器收益; iii)基于奇摄动非线性非自治系统的Lyapunov分析,提出的控制策略及其设计方法具有稳定性的理论证明。提供了一组针对实验室规模的原型的各种案例研究的实验结果,以支持所提出的控制策略及其设计方法的稳定性的理论证明,并显示所提出的策略优于现有策略的性能。

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