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Stability Analysis of Voltage Controlled Buck Converter Feed From a Periodic Input

机译:从周期性输入中电压控制降压转换器馈送的稳定性分析

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摘要

The ripples of dc input voltage belong to cascaded systems are usually close to the sinusoidal voltage, and its stability is quite different from that of dc constant voltage converters. Under the premise of no loss of generality, this article takes the output voltage of front-end converter in a cascaded system as sine wave, discusses the principle of closed-loop switching converters driven by sinusoidal input voltage, and calculates the average value of fixed-point state variables by using a discrete-time mathematical model. In addition, Filippov method is adopted to predict bifurcation by calculating the eigenvalues of Monodromy matrix belonging to the whole system, and the mechanism of nonlinear phenomena is also addressed. The results show that bifurcation points change obviously under different input conditions. Moreover, the influence of sinusoidal ripples amplitude and phase shift on bifurcation behavior is discussed, the compensation technique is used to prevent bifurcation and obtain the extended stability region of the circuit parameters. The experimental results prove the validity of the analysis.
机译:DC输入电压的波纹属于级联系统通常接近正弦电压,并且其稳定性与DC恒压转换器的稳定性完全不同。在没有一般性损失的前提下,本文将前端转换器的输出电压作为正弦波,讨论由正弦输入电压驱动的闭环开关转换器的原理,并计算固定的平均值通过使用离散时间数学模型来点出口状态变量。另外,采用FilippoV方法来通过计算属于整个系统的单曲线矩阵的特征来预测分叉分叉,并且还解决了非线性现象的机制。结果表明,分叉点在不同的输入条件下显而易见。此外,讨论了正弦涟漪幅度和相移对分叉行为的影响,使用补偿技术来防止分叉并获得电路参数的扩展稳定性区域。实验结果证明了分析的有效性。

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