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Transient modeling of Z-source chopper used for adjustable speed control of DC motor drive

机译:用于直流电动机驱动器可调速控制的Z源斩波器的瞬态建模

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摘要

The newly proposed Z-source chopper using LC impedance network with switching converter circuit coupled between power source and load can be used in modern energy conversion system because of both voltage buck and boost capabilities. This paper presents transient modeling of Z-source chopper and complete speed feed back control of separately excited dc motor. In the process of designing the control scheme for controlling the speed of separately excited dc motor, knowledge of transfer function representing the unique dc impedance network is essential. The presence of right-half-plane zero in developed average control-to-output model reveal that the output decreases initially before rising toward its new steady-state value, when a step increase in control input is applied. The nonminimum-phase transient response can be reduced by proper feedback control technique. The speed is controlled using direct measurement of speed and inductor current. Compensator for both speed loop and current loop are designed using classical control technique through small-signal analysis. Hysteresis band modulator is used for finding out the switching function of switches. Performance of control method of the compensated Z-source chopper is verified by simulation.
机译:新近提出的使用LC阻抗网络的Z型斩波器具有降压和升压功能,可在现代能量转换系统中使用,LC阻抗网络的开关转换器电路耦合在电源和负载之间。本文介绍了Z源斩波器的瞬态建模和单独励磁直流电动机的完整速度反馈控制。在设计用于控制单独励磁的直流电动机的速度的控制方案的过程中,了解代表唯一的直流阻抗网络的传递函数至关重要。在已开发的平均控制输出模型中,右半平面零的存在表明,当应用控制输入逐步增加时,输出最初会先下降,然后再升至新的稳态值。非最小相位瞬态响应可以通过适当的反馈控制技术来降低。通过直接测量速度和电感器电流来控制速度。速度环和电流环补偿器均采用经典控制技术通过小信号分析设计而成。磁滞带调制器用于找出开关的开关功能。通过仿真验证了补偿Z源斩波器控制方法的性能。

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