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Stability analysis of two-cell Buck converter driven DC motor with a discrete-time closed loop

机译:带有离散时间闭环的两节Buck变换器驱动的直流电动机的稳定性分析

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In this paper we deal with the dynamical behavior modeling, design and simulation of a two-cell DC-DC Buck converter driven DC motor. The angular velocity of the motor is controlled with a feedback loop through a Digital Pulse Width Modulation (DPWM). The stress of the switches of the converter are also balanced between the cells. Discrete time approach is used to obtain accurate information on the stability and to detect possible subharmonic oscillations quasi-periodic behavior and chaotic regimes. Under certain operating conditions, the switching model can be approximated by a three dimensional piecewise constant vector field and the corresponding the discrete time model is nonlinear map. We present a number of analytical, numerical and graphical tools that may be useful to study the dynamical behavior and stability of the fixed point of the map. Stability conditions are derived in terms of parameters. These results are confirmed by two-dimensional bifurcation diagrams.
机译:在本文中,我们研究了两节DC-DC Buck转换器驱动的DC电动机的动力学行为建模,设计和仿真。电机的角速度通过数字脉宽调制(DPWM)的反馈回路进行控制。单元之间的转换器开关的应力也得到平衡。离散时间方法用于获取有关稳定性的准确信息,并检测可能的次谐波振荡准周期行为和混沌状态。在某些操作条件下,切换模型可以通过三维分段常数矢量场进行近似,并且对应的离散时间模型为非线性映射。我们提供了许多分析,数值和图形工具,这些工具可能对研究地图固定点的动力学行为和稳定性很有用。稳定性条件是根据参数得出的。这些结果由二维分叉图证实。

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