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Dynamics of Photovoltaic-Generator-Interfacing Voltage-Controlled Buck Power Stage

机译:光伏发电机接口电压控制降压功率级的动力学

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This paper investigates the dynamic properties of the photovoltaic-generator-interfacing voltage-controlled buck power stage operating in both the maximum and limited power point tracking modes. The photovoltaic generator (PVG) is known to possess both current- and voltage-source properties with respect to its maximum power point. While voltage-fed operation is conventional, current-fed action is nontrivial and is thoroughly analyzed in this paper. The photovoltaic-generator-interfacing converter is formed by adding a capacitor at conventional voltage-fed converter input terminals, turning it into a current-fed power stage. During the maximum power point tracking phase, converter input voltage is regulated, possessing nontrivial dynamics. The situation is burdened further when output-voltage control should be alternatively realized to limit the voltage of the converter terminating the energy storage element. It is shown that both the photovoltaic generator and the terminating energy storage greatly affect the combined system dynamics. Parallel as well as cascaded control arrangements are proposed to support dual-mode system operation. Extended experimental results are shown to enforce presented theory and reveal nontrivial dynamics-related issues.
机译:本文研究了在最大和受限功率点跟踪模式下运行的光伏发电机接口电压控制降压功率级的动态特性。已知光伏发电机(PVG)相对于其最大功率点具有电流和电压源特性。尽管电压馈电操作是常规的,但电流馈电的作用并不重要,本文对此进行了详尽的分析。光伏发电机接口转换器是通过在传统的电压转换器输入端子处添加一个电容器,然后将其转换为电流馈电功率级而形成的。在最大功率点跟踪阶段,转换器输入电压受到调节,具有非凡的动态特性。当应当替代地实现输出电压控制以限制终止能量存储元件的转换器的电压时,情况进一步加重了。结果表明,光伏发电机和终端能量存储都极大地影响了组合的系统动力学。提出并行和级联控制布置以支持双模式系统操作。扩展的实验结果显示出可以执行提出的理论并揭示非平凡的动力学相关问题。

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