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Improved Balancing and Sensing of Submodule Capacitor Voltages in Modular Multilevel Converter

机译:改进了模块化多级转换器中子模块电容电压的平衡和传感

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摘要

The submodule capacitor voltage sensing and balancing is necessary for proper operation of modular multilevel converters (MMC). Voltage controlled oscillator is used for capacitor voltage measurement in the reported literature where voltage sensor is required to be calibrated. In this article, a voltage sensing method that does not need calibration of individual voltage sensors is used for capacitor voltage measurement. Moreover, a simplified sorting algorithm is employed for capacitor voltage balancing. A method of sorting the capacitor voltages that selects the submodules to be inserted directly based on logic equations is used as compared to the conventional methods of arranging them in ascending or descending order. This facilitates to simplifying the sorting technique and the scheme is easy to implement using any controller. Furthermore, to simplify the overall MMC control, the decentralized control arrangement is developed. Fairly good capacitor voltage balancing is obtained. The proposed balancing and sensing schemes of submodule capacitors are validated on a three-phase seven-level MMC hardware prototype with six submodules per arm. The prototype is tested for different operating conditions such as precharging, circulating current control, and grid connected operation of MMC.
机译:模块电容器电压传感和平衡是模块化多级转换器(MMC)的正常操作所必需的。电压控制振荡器用于报告的文献中的电容电压测量,其中需要校准电压传感器。在本文中,不需要校准各个电压传感器的电压感测方法用于电容器电压测量。此外,用于电容器电压平衡的简化分类算法。与以升序或降序排列的传统方法相比,使用基于逻辑方程直接插入要插入的电容器电压的方法。这有助于简化分类技术,并且该方案易于使用任何控制器实现。此外,为了简化整体MMC控制,开发了分散的控制装置。获得相当好的电容电压平衡。所提出的子模块电容器的平衡和传感方案在三相七级MMC硬件原型上验证,每个手臂具有六个子模块。测试原型用于不同的操作条件,例如预充电,循环电流控制和MMC的网格连接操作。

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