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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Hierarchical Velocity Control Based on Differential Flatness for a DC/DC Buck Converter-DC Motor System
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Hierarchical Velocity Control Based on Differential Flatness for a DC/DC Buck Converter-DC Motor System

机译:DC / DC Buck变换器-DC电动机系统中基于差分平坦度的分层速度控制

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This paper presents a hierarchical controller that carries out the angular velocity trajectory tracking task for a DC motor driven by a DC/DC Buck converter. The high level control is related to the DC motor and the low level control is dedicated to the DC/DC Buck converter; both controls are designed via differential flatness. The high level control provides a desired voltage profile for the DC motor to achieve the tracking of a desired angular velocity trajectory. Then, a low level control is designed to ensure that the output voltage of the DC/DC Buck converter tracks the voltage profile imposed by the high level control. In order to experimentally verify the hierarchical controller performance, a DS1104 electronic board from dSPACE and Matlab-Simulink are used. The switched implementation of the hierarchical average controller is accomplished by means of pulse width modulation. Experimental results of the hierarchical controller for the velocity trajectory tracking task show good performance and robustness against the uncertainties associated with different system parameters.
机译:本文提出了一种分层控制器,该控制器对由DC / DC Buck转换器驱动的DC电动机执行角速度轨迹跟踪任务。高电平控制与直流电动机有关,而低电平控制专用于DC / DC降压转换器。这两个控件都是通过差分平坦度设计的。高电平控制为DC电动机提供了所需的电压曲线,以实现对所需角速度轨迹的跟踪。然后,设计一个低电平控制以确保DC / DC Buck转换器的输出电压跟踪由高电平控制施加的电压曲线。为了通过实验验证分层控制器的性能,使用了dSPACE和Matlab-Simulink的DS1104电子板。分级平均控制器的切换实现是通过脉冲宽度调制来实现的。速度轨迹跟踪任务的分层控制器的实验结果表明,针对不同系统参数相关的不确定性,具有良好的性能和鲁棒性。

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