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High Efficiency Portable Solar Generator utilizing Optimum Solar Panel Orientation

机译:利用最佳太阳能电池板方位的高效便携式太阳能发电机

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This paper presents optimized solar photovoltaic (PV) panels tilted angle software and portable solar generator for flood evacuation centre in Malaysia peninsular. Although Malaysia peninsular is located near the equatorial, there is still a need to optimize the solar PV panels tilted angle since the horizontally located solar PV panels receive less solar radiation especially in the early morning and late afternoon when the incident angle is not perpendicular to the sun. Therefore a tilted angle optimization is necessary to harvest maximum solar radiation. In this paper, the functionality of developed prototype is tested and the product design is shown in details. The testing and development is done in Universiti Putra Malaysia. The developed software is purposely to optimize the azimuth and altitude angles in which the calculation is from solar noon on designated date and time. It is an open loop system based on mathematical formula and it predicts the sun movement. Therefore sensors are not required to sense the sun location. The developed prototype structure is based on steel and able to hold 1 kW solar PV panels. It has stable base in which the battery bank, charge controller and inverter are embedded inside it. It is designed to be retractable so that it can be loaded in pick-up truck to be carried to flood evacuation centre. The tilted angle for altitude is optimized automatically by the motor when the angle value is key in to the processor. The azimuth angle can be adjusted manually since it may reduce the power consumptions. The proposed portable solar generator has been designed to generated 3.6 kWh per day based on 1kW capacity. It can provide half of power requirement for scholl hall lighting which can power up 22 LED lights.
机译:本文为马来西亚半岛的洪水疏散中心提供了优化的太阳能光伏(PV)面板倾斜角度软件和便携式太阳能发电机。尽管马来西亚半岛位于赤道附近,但仍需要优化太阳能光伏板的倾斜角度,因为水平放置的太阳能光伏板接收的太阳辐射较小,尤其是在早晨和下午,当入射角不垂直于太阳辐射板时太阳。因此,倾斜角度优化对于收获最大的太阳辐射是必要的。在本文中,测试了开发原型的功能,并详细显示了产品设计。测试和开发在马来西亚布特拉大学完成。开发的软件旨在优化方位角和高度角,在该方位角和高度角中,计算是从指定日期和时间的太阳正午开始的。它是一个基于数学公式的开环系统,可以预测太阳运动。因此,不需要传感器来感测太阳的位置。研发的原型结构基于钢,能够容纳1 kW的太阳能PV板。它具有稳定的基础,其中内置了电池组,充电控制器和逆变器。它设计成可伸缩的,因此可以装在皮卡车中,以运送到洪水疏散中心。当角度值输入处理器时,马达会自动优化高度的倾斜角度。由于可以减少功耗,因此可以手动调节方位角。拟议中的便携式太阳能发电机的设计基于1kW的容量每天可产生3.6 kWh。它可以为门厅照明提供一半的功率,可以为22个LED灯供电。

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