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Controller design for integrated PV-converter modules under partial shading conditions

机译:局部遮光条件下集成光伏转换器模块的控制器设计

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摘要

Module-integrated PV and converter units have been a promising technique for achieving maximum power generation for mismatching and/or partially shaded PV modules. Control of a PV system with multiple such units is difficult as the operation of each unit is required to be regulated to generate the maximum power according to its respective light level. This paper presents a novel model-based, two-loop control scheme for a particular MIPC system, where bidirectional Cuk dc-dc converters are used as the bypass converters and a terminal Cuk boost functioning as a whole system power conditioner. Experimental tests of example systems consisting of two and three serially connected units are presented showing that the proposed system can increase power generation as much as 30%, compared to the conventional bypass diode structure. In general with n modules in series the maximum power gain is expected to be (100)%. The new control scheme is developed using analytical expressions for the transfer functions of the power converters. The control results showing rapid and stable responses are superior to that obtained by bypass diode structure which is conventionally controlled using Perturbation-and-Observation method.
机译:集成模块的PV和转换器单元已成为一种有前途的技术,可实现不匹配和/或部分阴影的PV模块的最大发电量。具有多个这样的单元的PV系统的控制是困难的,因为需要调节每个单元的操作以根据其各自的光水平来产生最大功率。本文提出了一种针对特定MIPC系统的基于模型的新型两环控制方案,其中双向Cuk dc-dc转换器用作旁路转换器,而终端​​Cuk boost用作整个系统的功率调节器。提出了由两个和三个串联单元组成的示例系统的实验测试,表明与常规的旁路二极管结构相比,该系统可以将发电量提高多达30%。通常,串联n个模块时,最大功率增益预计为(100 / n)%。新的控制方案是使用解析表达式来开发功率转换器的传递函数的。显示出快速而稳定的响应的控制结果优于通过使用扰动和观察方法常规控制的旁路二极管结构获得的结果。

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