光伏应用的快速混合MPPT技术:数值和实验验证

Gianluca Aurilio, M. Balato, G. Graditi, C. Landi, M. Luiso, M. Vitelli
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引用次数: 28

摘要

在光伏应用中,在不匹配条件下,需要采用最大功率点跟踪(MPPT)技术,该技术不仅可以调节阵列光伏模块的电压,还可以调节逆变器的直流输入电压。这种技术既不是只分布在光伏阵列的光伏模块上,也不是只集中在逆变器的输入端,因此可以认为是混合MPPT (hybrid MPPT)技术。本文提出并讨论了一种新的HMPPT技术。它的主要优点是通过快速估计光伏组件电压和逆变器输入电压的最优值来获得高的MPPT效率和高的跟踪速度。在对逆变器输入特性进行扫描的基础上,将新技术与简单的HMPPT技术进行了比较。理论分析和数值模拟结果得到了广泛的讨论。此外,为了对所提出的技术进行实验验证,还实现了一个配备PV模拟器的实验室测试系统。
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Fast Hybrid MPPT Technique for Photovoltaic Applications: Numerical and Experimental Validation
In PV applications, under mismatching conditions, it is necessary to adopt a maximum power point tracking (MPPT) technique which is able to regulate not only the voltages of the PV modules of the array but also the DC input voltage of the inverter. Such a technique can be considered a hybrid MPPT (HMPPT) technique since it is neither only distributed on the PV modules of the PV array or only centralized at the input of the inverter. In this paper a new HMPPT technique is presented and discussed. Its main advantages are the high MPPT efficiency and the high speed of tracking which are obtained by means of a fast estimate of the optimal values of PV modules voltages and of the input inverter voltage. The new HMPPT technique is compared with simple HMPPT techniques based on the scan of the power versus voltage inverter input characteristic. The theoretical analysis and the results of numerical simulations are widely discussed. Moreover, a laboratory test system, equipped with PV emulators, has been realized and used in order to experimentally validate the proposed technique.
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