Prototype Design Remote Smart Car 4WD Robot Car with Additional Power Photovoltaic Source Integrated Arduino

M. Aldhi, Habib Satria, Moranain Mungkin, Indri Dayana, Rudi Salam
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Abstract

The problem addressed in this research is designing an Electric Car Prototype, a technology design using Arduino Uno, L298N Driver Module, and HC-06 Bluetooth sensor which is controlled automatically using an application. The method used is a hybrid PLTS (Solar Power Plant) system based on Arduino Uno. This prototype combines electrical energy from batteries with solar energy produced by solar panels, and the main controller is Arduino Uno. Tests were carried out to evaluate the performance and efficiency of this electric car. The results of solar panel experiments in designing electric car prototypes, testing will be carried out on the efficiency of solar panels on the power produced. The following is the data from the experimental results measured through the following table 2 experiments. solar panels were installed on the roof or other parts exposed to sunlight on a prototype electric car. Solar panels consist of photovoltaic solar cells which are capable of converting solar energy into electrical energy. When sunlight falls on a solar panel, the solar cell produces an electric current. The electric current generated from the solar cell is then channeled to the charging module to charge the battery. The battery charging module regulates the voltage and electric current according to battery charging needs. This is important so that the battery does not receive too much or too little power during the charging process. After passing through the battery charging module, the electrical energy from the solar panels is used to charge the electric car battery. Electric car batteries function as energy storage which is used to control the engine and other electronic systems in the car. Obtained were the development of an environmentally friendly and sustainable electric vehicle.
集成 Arduino 的远程智能汽车四轮驱动机器人汽车原型设计与附加动力光伏源
本研究解决的问题是设计电动汽车原型,这是一项使用 Arduino Uno、L298N 驱动模块和 HC-06 蓝牙传感器的技术设计,可通过应用程序自动控制。使用的方法是基于 Arduino Uno 的混合 PLTS(太阳能发电厂)系统。该原型结合了电池提供的电能和太阳能电池板产生的太阳能,主控制器为 Arduino Uno。为了评估这辆电动汽车的性能和效率,我们进行了测试。太阳能电池板实验结果 在设计电动汽车原型时,将对太阳能电池板产生的电能的效率进行测试。太阳能电池板安装在电动汽车原型的车顶或其他暴露在阳光下的部位。太阳能电池板由光伏太阳能电池组成,能够将太阳能转化为电能。当阳光照射到太阳能电池板上时,太阳能电池就会产生电流。太阳能电池产生的电流被输送到充电模块,为电池充电。电池充电模块根据电池充电需求调节电压和电流。这一点很重要,这样电池在充电过程中就不会获得过多或过少的电能。通过电池充电模块后,来自太阳能电池板的电能将用于为电动汽车电池充电。电动汽车电池具有储能功能,可用于控制汽车的发动机和其他电子系统。这就是开发环保和可持续电动汽车的成果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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