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Stability and Multiconstraint Operating Region of Grid-Connected Modular Multilevel Converter Under Grid Phase Disturbance

机译:网格相位扰动下网格连接模块化多电平转换器的稳定性和多弦工作区域

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摘要

Grid-connected converters may operate under grid fault conditions, such as the short-/open-circuit and the transmission line switching, which may be accompanied by a phase angle difference between the grid and converter. This variation will affect the normal operation of the converter since its phase-locked loop is not able to track the grid voltage phase angle immediately. In this article, an instability phenomenon with unregulated ac line current is identified in a modular multilevel converter (MMC) based high-voltage direct-current transmission system when there is a sudden phase angle change on the grid side. A set of analytical constraints is developed for the MMC in terms of the Lyapunov stability, the modulation index, and the maximum power transfer capability. Then, a multiconstraint operating region of the MMC under various phase disturbances is derived. Moreover, the parameter influence on the operating region is analyzed and two stability-enhancing methods for the MMC system are proposed. Finally, the boundaries of the operating region and the stability-enhancing methods are verified by simulations and laboratory measurements of three-phase grid-connected MMCs.
机译:电网连接的转换器可以在网格故障条件下操作,例如短/开路和传输线路切换,其可以伴随电网和转换器之间的相位角差。这种变化会影响转换器的正常操作,因为其锁相环不能立即跟踪网格电压相位角。在本文中,当网格侧存在突然的相位角改变时,在基于模块化的多级转换器(MMC)的高压直流传输系统中识别出具有未调节交流线电流的不稳定现象。根据Lyapunov稳定性,调制指数和最大功率传输能力,为MMC开发了一组分析约束。然后,导出MMC在各种相位干扰下的MMC的多数组操作区域。此外,分析了对操作区域的参数影响,提出了两个用于MMC系统的稳定增强方法。最后,通过三相网格连接的MMC的模拟和实验室测量来验证操作区域的边界和稳定增强方法。

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