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Design and Implementation of Space Vector Modulation-Based Sliding Mode Control for Grid-Connected 3L-NPC Inverter

机译:并网3L-NPC逆变器基于空间矢量调制的滑模控制设计与实现

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This paper presents a closed-loop space vector modulation (SVM)-based sliding mode controller (SMC) for a three-level grid-connected neutral point clamped (3L-NPC) inverter. The nonlinear SMC based on Gao's reaching law has been designed to control the grid current and inject desired amount of active and reactive power into the network. Due to using single dc source at the NPC inverter dc bus, neutral point voltage is controlled through redundant switching states and instantaneous dc voltage feedback integrated into SVM technique. Meanwhile, there is no external voltage controller involved, thus no associated fine tuning issues are existed. The performance of the proposed hybrid controller to inject a desired active/reactive power to the grid is investigated through external perturbations such as change in the line current amplitude/phase shift, ac voltage fluctuation, as well as dc voltage variation. Full converter state-space model was developed and simulated. Experimental results are provided to verify the fast dynamic performance, low content of line current THD%, and good voltage balancing of dc bus capacitors of the NPC inverter.
机译:本文提出了一种用于三级并网中性点钳位(3L-NPC)逆变器的基于闭环空间矢量调制(SVM)的滑模控制器(SMC)。已经设计了基于高定律的非线性SMC,以控制电网电流并将所需量的有功和无功功率注入网络。由于在NPC逆变器直流总线上使用了单个直流电源,因此通过冗余开关状态和集成到SVM技术中的瞬时直流电压反馈来控制中性点电压。同时,不涉及外部电压控制器,因此不存在相关的微调问题。通过外部扰动(例如线路电流幅度/相移的变化,交流电压波动以及直流电压变化)来研究提出的混合控制器向电网注入所需有功/无功功率的性能。开发并模拟了全转换器状态空间模型。提供实验结果以验证NPC逆变器的快速动态性能,低线电流THD%含量以及良好的直流母线电容器电压平衡。

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