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Fault tolerant peak current mode controlled flyback converter for solar PV modules

机译:太阳能光伏模块的容错峰值电流模式控制反激式转换器

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This paper proposes a novel scheme for the fault detection in a DC-DC converter connected to a solar PV module with the help of a proposed state machine based model. This scheme can be practically employed by applying Peak Current Mode (PCM) control technique with an excessive ramp signal. Flyback topology having low cost, minimal components which provides isolation too is being selected over other topologies. By employing PCM on the Flyback converter, dynamics has been controlled both at the input and output terminals because of the position of inductor at input node. Stability analysis has been explained with help of Bode plots of system transfer function clearly showing the removal of RHS pole which occurs due to solar PV as input source. A 60 W hardware protype of Flyback converter has been built to test the proposed scheme. Results clearly show the generated outputs with a better cross regulation over a Vpv range of 60-120V.
机译:本文借助提出的基于状态机的模型,提出了一种用于连接至太阳能光伏模块的DC-DC转换器中故障检测的新方案。通过将峰值电流模式(PCM)控制技术应用于过多的斜坡信号,可以实际采用该方案。与其他拓扑相比,具有低成本,最少组件且提供隔离功能的反激式拓扑也正在被选择。通过在反激式转换器上使用PCM,由于电感在输入节点的位置,因此已经在输入和输出端子上控制了动态。借助系统传递函数的伯德图对稳定性分析进行了解释,清楚地显示了由于太阳能PV作为输入源而引起的RHS极点的去除。已经建立了一个60 W的Flyback转换器原型来测试该方案。结果清楚地表明,在60-120V的Vpv范围内,产生的输出具有更好的交叉调节。

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