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Control Strategy of High-Performance Active Rectifier Using Modular Multilevel Converter Without DC-link Voltage Sensors

机译:使用DC-Link电压传感器的模块化多电平转换器控制高性能活性整流器的控制策略

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Modular multilevel converter (MMC) is a popular topology in the medium-/high-voltage power conversion due to its modular structure, equal voltage stress, small line-line filter and low-distortion current. It can be operated as an active rectifier and achieve controllable dc output voltage and adjustable active/reactive power. However, dc-link voltage sensors must be installed to realize the feedback control of the system. To reduce the costs and improve the performance of MMC-based rectifier, this paper presents a sensor-less control strategy, which removes the traditional dc-link voltage sensors. An accurate prediction model of dc-link voltage is developed as well as a complete implementing method. The value of the output DC voltage is obtained through the prediction algorithm. The pre-charging, active-power and reactive-power mode of the MMC-based rectifier is extensively studied to validate its effectiveness. The proposed method not only reduces the system device cost but presents excellent steady-state and dynamic performance.
机译:模块化多电平转换器(MMC)是中/高压功率转换中的流行拓扑,由于其模块化结构,等电压应力,小型线路线路滤波器和低失真电流。它可以作为有源整流器操作,实现可控的直流输出电压和可调节的主动/无功功率。但是,必须安装DC-Link电压传感器以实现系统的反馈控制。为降低成本并提高基于MMC的整流器的性能,本文提出了一种更少的控制策略,可去除传统的直流电压传感器。开发了直流链路电压的精确预测模型以及完整的实现方法。通过预测算法获得输出DC电压的值。广泛研究了MMC的整流器的预充电,有功功率和无功 - 功率模式,以验证其有效性。所提出的方法不仅降低了系统设备的成本,而且呈现出优异的稳态和动态性能。

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