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A New Predictive Control Strategy for Multilevel Current-Source Inverter Grid-Connected

机译:多级电流源逆变器并网的新型预测控制策略

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The DC/AC converters—commonly called inverters—transform the DC into AC and are classified as Voltage-Source Inverters (VSIs) or Current-Source Inverters (CSIs). A variant of the CSIs are the Multilevel Current-Source Inverters (MCSIs). In this paper, a new predictive control strategy for an MCSI with multiple inputs and grid-connected is proposed. The control technique uses the advantages of the Sliding Mode Control (SMC) for the balance of current in the input and Predictive Control (PC) to obtain a suitable grid current, since it separates both functions. The calculations are based on conventional Kirchhoff’s Voltage Law (KVL) and knowledge of the mathematical model of the system is not required. Generally, traditional MCSIs use large input inductors (100–1000 mH). In this paper, it is achieved a reduction in size of the input inductors. Simulation results are shown to validate the proposed control.
机译:DC / AC转换器(通常称为逆变器)将DC转换为AC,并分为电压源逆变器(VSI)或电流源逆变器(CSI)。 CSI的一种变体是多级电流源逆变器(MCSI)。本文提出了一种多输入并网的MCSI预测控制策略。该控制技术利用滑模控制(SMC)的优势来平衡输入中的电流,并利用预测控制(PC)来获得合适的电网电流,因为该技术将这两个功能分开了。这些计算是基于传统的基尔霍夫电压定律(KVL)进行的,不需要了解系统的数学模型。通常,传统的MCSI使用大型输入电感器(100–1000 mH)。在本文中,实现了输入电感器尺寸的减小。仿真结果表明可以验证所提出的控制方法。

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