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Combined Current Sensing Method for the Three-Phase Quasi-Z-Source Inverter

机译:三相准Z源逆变器的组合电流检测方法

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The impedance-source network converter, utilizing a unique LC network and previously forbidden shoot-through states, provides the ability to buck and boost the input voltage in a single stage. However, the inrush shoot-through current (STC) in startup or transient process might cause undesired current stresses on converter devices. This paper focuses on the STC sensing for an effective inrush current limitation by the combined current sensing technique in the quasi-Z-source inverter. STC and phase currents for the inverter control strategy are obtained simultaneously. No extra hardware is needed and the effects of current sensor bandwidth and duty cycle on the sensing accuracy are analyzed mathematically. The voltage spike gets avoided by integrating the stray inductance into the impedance network. Finally, an STC control loop based on proposed method are embedded in the field-oriented control strategy. The inrush STC and the device current stress in the transient process get suppressed. Simulation and experimental results from a quasi-Z-source inverter validate the feasibility of the proposed methods.
机译:阻抗源网络转换器利用独特的LC网络和先前禁止的直通状态,能够在单个阶段降压和提升输入电压。但是,启动或瞬态过程中的浪涌直通电流(STC)可能会对转换器设备造成不希望的电流应力。本文重点介绍了通过准Z源逆变器中的组合电流感测技术对有效的浪涌电流限制进行STC感测。同时获得用于逆变器控制策略的STC和相电流。无需额外的硬件,并且可以通过数学方法分析电流传感器带宽和占空比对传感精度的影响。通过将杂散电感集成到阻抗网络中,可以避免电压尖峰。最后,将基于所提出方法的STC控制回路嵌入到磁场定向控制策略中。瞬态过程中的浪涌STC和器件电流应力得到抑制。准Z源逆变器的仿真和实验结果验证了所提方法的可行性。

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