开关Z源阻抗网络的小信号和信号流图建模

C.J. Gajanayake;D.M. Vilathgamuwa;Poh Chiang Loh
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引用次数: 120

摘要

Z源逆变器是最近提出的一种转换器拓扑结构,它在直流侧使用独特的X形阻抗网络来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,了解代表其独特直流阻抗网络的传递函数是至关重要的。为此,本文介绍了使用扰动数学分析和考虑寄生分量的信号流图对Z源阻抗网络进行动态小信号建模。特别是,开发的平均控制输出模型揭示了网络传递函数中右手平面零点的存在,其轨迹随网络参数的变化可以使用经典根轨迹分析来研究。使用图形信号流建模方法,还可以导出各种干扰对输出传递函数的影响,并对其参数敏感性进行类似的研究。最后,给出了仿真和实验结果,以验证本文中确定的动力学现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Small-signal and signal-flow-graph modeling of switched Z-source impedance network
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.
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