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A General Frequency-Domain Model of Trailing-Edge and Leading-Edge Carrier PWM dc–dc Converter Based on Hybrid Continuous and Discrete-Time Descriptions

机译:基于混合连续和离散时间描述的后缘和前缘载波PWM DC-DC转换器的一般频域模型

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摘要

This article proposes a general frequency-domain model to reflect the effect of trailing-edge and leading-edge carrier on the stability of the pulsewidth modulation (PWM) dc-dc converter. The state vector in the general state-space averaging (SSA) model is considered as the sampled value of the actual state vector rather than the average value. In this way, the continuous and discrete-time descriptions can be used together to maintain a balance between accuracy and simplicity. In the proposed model, the main circuit and controller are described by a continuous model with the same equations as the existing SSA model. Therefore, the simple structure of the continuous model is inherited. The PWM carrier comparison component is described by a discrete-time model (DTM), which can accurately reflect the effects of PWM carrier and state vector ripple. Thus, the high accuracy of DTM is maintained as well. In order to show the advantages of the proposed model, the comparison between the proposed model and other existing models is made. Compared with the SSA model and the discrete average model, the proposed hybrid model is more accurate. Compared to the DTM, the proposed hybrid model is more convenient to use. Simulation and experiment results verify the above analyses and advantages.
机译:本文提出了一般频域模型,以反映后缘和前沿载波对脉冲宽度调制(PWM)DC-DC转换器的稳定性的影响。一般状态空间平均(SSA)模型中的状态向量被认为是实际状态向量的采样值而不是平均值。以这种方式,可以一起使用连续和离散时间描述,以保持精度和简单性之间的平衡。在所提出的模型中,主电路和控制器由具有与现有SSA模型相同的等式的连续模型来描述。因此,连续模型的简单结构是遗传的。 PWM载波比较分量由离散时间模型(DTM)描述,其可以准确地反映PWM载波和状态向量纹波的效果。因此,也保持了DTM的高精度。为了展示所提出的模型的优点,所提出的模型与其他现有模型之间的比较。与SSA模型和离散平均模型相比,所提出的混合模型更准确。与DTM相比,所提出的混合模型使用更方便。仿真和实验结果验证了上述分析和优点。

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