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Experimental implementation techniques of PO MPPT algorithm for PV pumping system

机译:光伏抽水系统P&O MPPT算法的实验实现技术

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Maximum power point trackers (MPPTs) play a vital role in photovoltaic (PV) systems because they increase the efficiency of the solar photovoltaic system by increasing the power output. MPPT algorithms are necessary because PV arrays have a non linear voltage-current characteristic with a unique point where the power produced is maximum. The output power from the solar panel varies with solar irradiance, temperature and load. In this paper, we present different performances of a photovoltaic (PV) water pumping system. A prototype of experimental bench in installed in the laboratory of INSAT Tunisia. This paper presents the design and implementation of perturb& observe (P&O) MPPT algorithm which is responsible for driving the dc-dc boost converter to track maximum power point (MPP). And thereafter feeds a pump through a DC/AC inverter. For the best electrical and mechanical performance, all components of the solar pumping system are carefully matched. Correct sizing of the pump, motor and controlling devices, will allow the system to operate at the highest efficiency to ensure economical water pumping. The obtained experimental results illustrated by curves are represented and analyzed.
机译:最大功率点跟踪器(MPPT)在光伏(PV)系统中起着至关重要的作用,因为它们通过增加功率输出来提高太阳能光伏系统的效率。 MPPT算法是必需的,因为PV阵列具有非线性电压-电流特性,并且具有产生最大功率的唯一点。太阳能电池板的输出功率随太阳辐照度,温度和负载而变化。在本文中,我们介绍了光伏(PV)水泵系统的不同性能。实验台的原型已安装在INSAT突尼斯实验室中。本文介绍了扰动与观察(P&O)MPPT算法的设计与实现,该算法负责驱动DC-DC升压转换器跟踪最大功率点(MPP)。然后通过DC / AC逆变器给泵供电。为了获得最佳的电气和机械性能,太阳能泵系统的所有组件都经过精心匹配。正确选择泵,电机和控制设备的尺寸,将使系统以最高效率运行,以确保经济地抽水。曲线表示所获得的实验结果,并进行了分析。

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