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首页> 外文期刊>IEEE Transactions on Industry Applications >Dynamic Modeling and Analysis of Buck Converter Based Solar PV Charge Controller for Improved MPPT Performance
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Dynamic Modeling and Analysis of Buck Converter Based Solar PV Charge Controller for Improved MPPT Performance

机译:基于降压转换器的太阳能光伏充电控制器的动态建模和分析,以提高MPPT性能

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摘要

Maximum power point tracking (MPPT) control is a key functionality in solar photovoltaic (PV)-based power conversion systems. A variety of perturbative MPPT control schemes are available in the literature, many of which are voltage-based techniques wherein the PV bus voltage is perturbed and set to the required level by an appropriate converter control that achieves the MPP tracking. However, a comprehensive plant model of the PV-fed converter system and a systematic control design of the PV bus voltage loop that facilitates the design of the MPPT control is not available in the literature. In this article, a detailed small-signal model is proposed for a single-stage PV-fed buck converter that acts as a battery charge-controller. The effects of parasitic storage elements present in the PV source as well as the interconnecting cable from rooftop are discussed in detail, along with the impact of series-parallel connection of the PV modules for power scaling. A full-order as well as a reduced-order model of the system is proposed and the various relevant transfer-functions are analytically derived. Based on this model and the control to converter input bus voltage transfer-function (v) over tilde (in)/(d) over tilde, a systematic design procedure for the PV bus voltage controller is proposed. It is shown that such a design facilitates the selection of perturbation period of a typical MPPT control algorithm for an improved tracking performance. The steps involved in the system model development and the control design are generalized and can be extended to other converter topologies as well. Active transfer-function measurements and experiments conducted on a 1-kW charge-controller hardware prototype validate the accuracy of the proposed model and the tracking performance of the MPPT control.
机译:最大功率点跟踪(MPPT)控制是基于太阳能光伏(PV)的功率转换系统的关键功能。文献中提供了多种摄动MPPT控制方案,其中许多是基于电压的技术,其中通过实现MPP跟踪的适当转换器控制来扰动PV总线电压并将其设置为所需的水平。但是,文献中没有提供光伏馈电转换器系统的完整工厂模型和有助于MPPT控制设计的PV总线电压环路的系统控制设计。在本文中,针对用作电池电荷控制器的单级PV馈送降压转换器,提出了详细的小信号模型。详细讨论了光伏电源中存在的寄生存储元件以及屋顶互连电缆的影响,以及光伏组件串联-并联连接对功率缩放的影响。提出了系统的全阶和降阶模型,并分析得出了各种相关的传递函数。基于该模型,通过控制转换器输入母线电压在波浪线上的传递函数(v)/在波浪线上的(d),提出了光伏母线电压控制器的系统设计程序。结果表明,这种设计有助于选择典型MPPT控制算法的扰动周期,以提高跟踪性能。系统模型开发和控制设计中涉及的步骤是通用的,并且可以扩展到其他转换器拓扑。在1kW充电控制器硬件原型上进行的主动传递函数测量和实验验证了所提出模型的准确性和MPPT控件的跟踪性能。

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