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首页> 外文期刊>American journal of applied sciences >A Real-Time Optimization Approach to the Efficiency of a Photovoltaic System by a Hybrid Tracking Technique using LabVIEW
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A Real-Time Optimization Approach to the Efficiency of a Photovoltaic System by a Hybrid Tracking Technique using LabVIEW

机译:利用LabVIEW通过混合跟踪技术实现光伏系统效率的实时优化方法

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Among the lines of research on improving the efficiency of a photovoltaic panel, sun tracking techniques occupy a large part. In this article, an extension of Laboratory Virtual Instrument Engineering Workbench (LabVIEW); LabVIEW Interface For Arduino (LIFA) is used. It allows the driving of an Arduino board from LabVIEW, on which a collaboration technique between two categories of pursuit is developed: The first is sensory and the second is pre-programmed. This hybrid two-axis technique is characterized by impulse control strategist with pre-programmed control and dual sensory correction. The results reveal that the hybrid tracking system gave an additional energy gain of about 36% compared to a fixed photovoltaic panel system. Thus, it has practically a percentage increase of 2 and 2.3% respectively to the two techniques used.
机译:在提高光伏板效率的研究中,太阳跟踪技术占据了很大的零件。在本文中,延伸了实验室虚拟仪器工程工作台(LabVIEW);使用Arduino(LIFA)的LabVIEW界面。它允许从LabVIEW驾驶Arduino板,其中开发了两类追踪之间的协作技术:第一个是感官,第二类是Sensory,第二个是Sensory,第二类是Sensory,第二个是预编程的。这种混合的双轴技术的特点是脉冲控制策略家,具有预先编程控制和双感觉校正。结果表明,与固定的光伏面板系统相比,混合动力跟踪系统的额外能量增益为约36%。因此,它几乎具有2和2.3%的百分比分别与使用的两种技术相比。

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