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Predictive control for active split DC-bus 4-leg inverters

机译:有源分割式直流母线四脚逆变器的预测控制

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This paper proposes a Predictive Control, formally Dead-Beat (DBC), for a four-leg inverter having an Active Split DC-bus on the fourth leg and LC filters on phase-to-neutral outputs. Such a configuration permits to reduce the voltage ripple on the neutral point connected to inverter grounding. As only few control techniques have been investigated for Active Split DC-bus, the paper proposes to investigate the performance of DBC, which has been widely used for other power electronics applications. The main advantage of DBC over the classical PI or Resonant controller is that no tuning is required for control loop, while obtaining very fast transient response as well it can handle general constrained nonlinear systems with multiple inputs and outputs in a unified and clear manner. These features are highly valuable in power electronic converters used to supply the electrical utility loads in micro-grids. However, one of the main drawback of the DBC is the limited capabilities on harmonics compensations required when supplying unbalanced and non-linear loads. The paper presents continuous-time and discrete-time models of DBC applied to a four-leg VSI with Active Split DC-bus, highlighting the performance through simulation results as well as experimental tests.
机译:本文提出了一种预测控制,正式称为无节拍(DBC),用于四臂逆变器,该臂在第四臂具有有源分离式直流母线,在相-中性输出端具有LC滤波器。这样的配置允许减小连接到逆变器接地的中性点上的电压纹波。由于仅研究了有源分离直流母线的几种控制技术,因此本文建议研究已广泛用于其他电力电子应用的DBC的性能。与传统的PI或谐振控制器相比,DBC的主要优点是控制回路无需调整,同时还可以获得非常快速的瞬态响应,它可以以统一和清晰的方式处理具有多个输入和输出的通用约束非线性系统。这些功能在用于为微电网提供电力负荷的电力电子转换器中具有很高的价值。但是,DBC的主要缺点之一是在提供不平衡和非线性负载时所需的谐波补偿功能有限。本文介绍了DBC的连续时间和离散时间模型,这些模型应用于具有Active Split DC总线的四臂VSI,并通过仿真结果和实验测试突出了性能。

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