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首页> 外文期刊>International journal of electronics >An enhanced scanning-based MPPT approach for DMPPT systems
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An enhanced scanning-based MPPT approach for DMPPT systems

机译:用于DMPPT系统的基于扫描的增强MPPT方法

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摘要

In this paper, an improved maximum power point tracking (MPPT) approach being low parameter dependency, simple structure and limited search interval has been presented for distributed MPPT photovoltaic (PV) systems. Basically, this approach is based on scanning of power-voltage (P-V) characteristic curve of PV modules in a limited duty ratio interval which makes tracking operation simple, fast and efficiently available in both uniform irradiance and partial shading conditions (PSCs). By limiting the scanning interval of maximum and minimum values of duty ratio via some analyses related to P-V characteristic for PSCs, global MPPT (GMPPT) is achieved in an efficient way. So as to validate performance of the proposed approach, a single-ended primary inductance converter has been used in both simulation and experimental studies. PV simulator has been used as a PV source to obtain different module characteristics with different number of bypass diodes and PV power levels. Both simulation and experimental results clarify that improved MPPT approach realises GMPPT effectively. Due to the high performance results, this approach can be an alternative technique in module-integrated converters, smart modules and PV power optimisers in which single module is used.
机译:本文提出了一种改进的最大功率点跟踪(MPPT)方法,该方法具有低参数依赖性,简单的结构和有限的搜索间隔,适用于分布式MPPT光伏(PV)系统。基本上,此方法基于在有限的占空比间隔内扫描PV模块的功率-电压(P-V)特性曲线,这使得跟踪操作在均匀辐照度和部分阴影条件(PSC)下都变得简单,快速且有效。通过一些与PSC的P-V特性相关的分析,通过限制占空比最大值和最小值的扫描间隔,可以有效地实现全局MPPT(GMPPT)。为了验证所提出方法的性能,在仿真和实验研究中都使用了单端初级电感转换器。 PV仿真器已用作PV源,以通过不同数量的旁路二极管和PV功率水平获得不同的模块特性。仿真和实验结果均表明,改进的MPPT方法可有效实现GMPPT。由于具有高性能,因此该方法可以成为使用单个模块的模块集成转换器,智能模块和PV电源优化器中的替代技术。

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