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Control of bifurcation in the buck converter using novel resonant parametric perturbation

机译:使用新型谐振参数扰动控制降压转换器中的分叉

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The Buck converter exhibits interesting nonlinear phenomena which many studies have addressed, and the resonant parametric perturbation is effective to control these nonlinear phenomena. We investigate the control mechanism by using the monodromy matrix derived from the Filippov's method when the perturbation has an appropriate phase shift and the duty ratio is not changed. We find that only one term in the monodromy matrix changes, and as a result of it, the eigenvalues may move into the unit circle with perturbation amplitude much less than existing methods. Along this clue, we make further attempt to decrease the amplitude by increasing the perturbation frequency to be an integer multiple of the converter frequency. The experimental results show effectiveness of the new method.
机译:Buck转换器展现出有趣的非线性现象,许多研究已经解决了这一问题,并且谐振参数扰动对于控制这些非线性现象是有效的。当微扰具有适当的相移且占空比不变时,我们使用源自Filippov方法的单峰矩阵研究控制机制。我们发现,单峰矩阵中只有一个项会发生变化,因此,特征值可能会以扰动幅度移动到单位圆中,远小于现有方法。沿着这个线索,我们进一步尝试通过将扰动频率增大为转换器频率的整数倍来减小幅度。实验结果表明了该方法的有效性。

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