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Design and Implementation of a Sensorless Multilevel Inverter With Reduced Part Count

机译:减少零件数的无传感器多电平逆变器的设计与实现

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This letter proposes a single-phase nine-level (9L) inverter topology suitable for grid-connected renewable energy systems. The proposed inverter is realized using a T-type neutral-point-clamped inverter connected in cascade to a floating capacitor (FC) H-bridge. Additionally, two low-frequency switches are added across the dc-link enabling the inverter to generate a 9L waveform. A sensorless voltage control based on redundant switching state is developed and embedded with PWM controller, which is responsible for regulating the FC voltage at one-quarter of the dc source voltage. The proposed PWM technique employs the generation of 9L waveform without using any voltage sensor, thereby reducing the complexity of the overall control scheme. This, in turn, will make the overall system appealing for various industrial applications. In comparison to conventional and recent topologies, generation of the 9L waveform using a lower number of components is the notable contribution. Another important feature of the proposed inverter is that if FC H-bridge fails, it can be bypassed, and the inverter can still operate as a 5L inverter at its nominal power rating. Furthermore, a comprehensive comparison study is included which confirms the merits of the proposed inverter against those of other state-of-the-art topologies. Finally, simulation and experimental results are included for validating the feasibility of the proposed system.
机译:这封信提出了一种适用于并网可再生能源系统的单相九级(9L)逆变器拓扑。所提出的逆变器是通过串联连接到浮动电容器(FC)H桥的T型中性点钳位逆变器来实现的。此外,在直流链路上添加了两个低频开关,使逆变器能够生成9L波形。开发了基于冗余开关状态的无传感器电压控制,并嵌入了PWM控制器,该控制器负责将FC电压调节为直流电源电压的四分之一。所提出的PWM技术在不使用任何电压传感器的情况下利用了9L波形的生成,从而降低了整体控制方案的复杂性。反过来,这将使整个系统对各种工业应用具有吸引力。与传统拓扑和最新拓扑相比,使用较少数量的组件生成9L波形的贡献显着。提议的逆变器的另一个重要特征是,如果FC H桥发生故障,则可以将其旁路,并且逆变器仍可以在其额定功率下作为5L逆变器运行。此外,还包括一项全面的比较研究,该研究确认了拟议的逆变器与其他最新拓扑的优点。最后,通过仿真和实验结果验证了该系统的可行性。

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