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Fast Photovoltaic-System Voltage- or Current-Oriented MPPT Employing a Predictive Digital Current-Controlled Converter

机译:采用预测数字电流控制转换器的快速光伏系统电压或电流定向MPPT

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摘要

In this paper, a photovoltaic (PV)-system maximum power point (MPP) tracking (MPPT) control strategy employing a predictive digital current-controlled converter implemented in conventional hardware resources is presented. Two current programmed controllers (finite-state predictive control and valley current control) have been integrated into a system with current- or voltage-oriented MPPT. The modifications applied to the perturb-and-observe algorithm enable the MPP tracker to interact rapidly with the controller accounting also for abrupt irradiance drops by considering voltage and current limitations. The implementation of digital control in PV systems entails significant advantages of speed and accuracy, although the controller converges correctly at the MPP under irradiance variations featuring fast dynamic response. The proposed controller scheme has been experimentally demonstrated on a digitally current-controlled boost converter delivering power from a PV system.
机译:在本文中,提出了采用常规硬件资源中实现的预测数字电流控制转换器的光伏(PV)系统最大功率点(MPP)跟踪(MPPT)控制策略。两个电流编程的控制器(有限状态预测控制和谷值电流控制)已集成到具有面向电流或电压的MPPT的系统中。应用于扰动和观察算法的修改使MPP跟踪器能够与控制器快速交互,同时考虑到电压和电流限制,这也考虑了突然的辐照度下降。尽管在快速动态响应的辐照度变化下,控制器可以正确地收敛在MPP上,但PV系统中数字控制的实现却带来了速度和精度方面的显着优势。所提出的控制器方案已在由PV系统提供功率的数字电流控制升压转换器上进行了实验验证。

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