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NI LabVIEW-Based Solar Power Recording Device for Optimizing PV Modules with Fixed Orientation and Tilt to Capture Maximum Solar Irradiance with Respect to Magnetic Declination

机译:基于NI LabVIEW的太阳能记录装置,用于优化具有固定方向和倾斜的光伏模块,以捕获相对于磁偏差的最大太阳辐照度

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The sun is earth's greatest source of energy and the most common method of capturing its energy is through photovoltaic (PV) panels, or more commonly known as solar panels. Several factors affect the amount of energy harnessed by currently installed solar panels. However, a common problem in maximizing solar energy harnessing is improper tilting of solar panels which contributes to at most 13% loss to the PV system's efficiency. A device which will measure the amount of power harnessed by the solar panels will be a great help to identify the optimum angle of tilt to yield maximum solar energy at a residential area in Taguig City, Philippines, a city which is shifting to solar energy as an alternative resource. The researchers constructed a recording device which records the power of three 1.3W solar panels tilted differently with each other, and logs the data using NI MyRIO. The device is also self-sufficient which utilizes a 30W solar panel to charge a 12V battery which powers the NI MyRIO. With six days of testing for the month of September, data shows that the device has an error rating of 0.36%, efficiency of 50.83%, and a fair portability rating from solar panel installers and future researchers. Data also shows that the optimum angle for the month of August is 7.0875° with respect to azimuth.
机译:太阳是地球的最大的能量并捕获它的能量的最常用的方法的来源是通过光伏(PV)面板,或更通常称为太阳能电池板。若干因素影响能量的当前安装的太阳能电池板驾驭的量。然而,在最大限度地提高太阳能能量利用一个共同的问题是在13%损失的光伏发电系统的效率,有助于太阳能电池板的不当倾斜。将测量由太阳能电池板驾驭的功率量的装置将是一个很大的帮助,以确定倾斜的最佳角度在达义市,菲律宾,一个城市居住区被转移到太阳能作为以获得最大的太阳能替代资源。研究者构造,其记录3块1.3W的太阳能电池板的相互不同地倾斜的功率的记录装置,以及使用NI MyRIO记录的数据。该器件还自给自足它利用30W的太阳能电池板,以12V的电池,该电池功率的NI MyRIO充电。随着测试的九月份的六天,数据显示,该设备具有的0.36%,50.83%效率的错误等级,从太阳能电池板安装和未来的研究者公平的便携性评级。数据还表明,对于八月份的最佳角度是7.0875°相对于方位角。

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