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首页> 外文期刊>IEEE Power Electronics Letters >Small-signal and signal-flow-graph modeling of switched Z-source impedance network
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Small-signal and signal-flow-graph modeling of switched Z-source impedance network

机译:开关Z源阻抗网络的小信号和信号流图建模

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摘要

The Z-source inverter is a recently proposed converter topology that uses a unique X-shaped impedance network on its dc side for achieving both voltage-buck and boost capabilities. In the process of designing control schemes for the Z-source inverter, knowledge of the transfer function representing its unique dc impedance network is essential. Toward this end, this letter presents dynamic small-signal modeling of the Z-source impedance network using perturbed mathematical analysis and a signal-flow graph with parasitic components taken into consideration. In particular, the developed average control-to-output model reveals the presence of a right-hand-plane zero in the network transfer function, whose trajectories with variations in network parameters can be studied using classical root-locus analyses. Using the graphical signal-flow modeling approach, various disturbance-to-output transfer functions can also be derived with their parameter sensitivity similarly studied. Lastly, simulation and experimental results are presented for verifying the dynamic phenomena identified in this letter.
机译:Z源逆变器是最近提出的转换器拓扑,在其直流侧使用独特的X形阻抗网络以实现降压和升压功能。在设计Z源逆变器的控制方案的过程中,必须了解代表其独特直流阻抗网络的传递函数。为此,这封信提出了利用干扰数学分析和考虑了寄生成分的信号流图对Z源阻抗网络进行动态小信号建模的方法。特别是,所开发的平均控制输出模型揭示了网络传递函数中存在右手平面零,可以使用经典的根轨迹分析来研究其网络参数变化的轨迹。使用图形信号流建模方法,还可以导出各种扰动到输出的传递函数,并对其参数敏感性进行类似研究。最后,给出了仿真和实验结果,以验证在这封信中确定的动态现象。

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