具有电压、电流和功率监测的太阳能智能手机充电站

Z. Noer, Muhammad Jundi Fathurrahman, Annisa Novita Putri Siregar, Misuki Awanda, Muhammad Abduh Akram Agus, Lolo Ferdinan Siahaan
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摘要

可再生能源作为替代能源继续得到发展,以减少对化石能源的使用。其中之一是太阳能发电厂,它使用来自阳光的光源。对于公众来说,电能对支持使用智能手机等工作和通信活动是有用的,但在公共场所发现的为智能手机电池充电的充电器并不多。它设计并实施了一个智能手机充电站,利用太阳能为智能手机电池充电。在智能手机充电站充电的智能手机电池,充电时可以显示电压、电流和功率;该工具配备了INA219传感器、ATmega328微控制器和太阳能,使该工具看起来很智能。制作这个工具的目的是为了了解智能手机充电站和厂家充电器的工作原理、电压、电流、功率以及智能手机电池的充电时间的对比。其工作原理是当该工具为智能手机电池充电时,INA219传感器接收电流和电压形式的输出值数据。此外,传感器将信号发送到ATmega328进行转换并显示为LCD上的数据,以便用户可以看到输出值。该工具在使用Micro USB为智能手机电池充电时的测试结果显示,电压、电流和功率的平均值分别为11.7伏、0.48安培和5.98瓦。USB Type C显示的平均电压、电流和功率分别为11.33伏、0.71安培和8.37瓦。厂商Micro USB上的电池充电时间与智能手机充电站相比,相差27分钟;使用制造商的USB Type C和智能手机充电站充电的智能手机电池的持续时间的比较有22分钟的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solar-Based Smartphone Charging Stations with Voltage, Current, and Power Monitoring
Renewable energy sources continue to be developed as alternative energy sources to reduce the use of fossil energy sources. One of them is a solar power plant that uses a light source from sunlight. For the public, electrical energy is useful to support work and communication activities such as using smartphones, but not many chargers are found in public places to charge smartphone batteries. It has designed and implemented a smartphone charging station to charge smartphone batteries using solar power. The smartphone battery charging on this smartphone charging station can display voltage, current, and power when charging the battery;this tool is equipped with an INA219 sensor, ATmega328 microcontroller, and solar power to make this tool look smart. The purpose of making this tool is to find out the working principle, voltage, current, and power and compare the charging time of the smartphone battery between the smartphone charging station and the manufacturer's charger. The working principle is that when this tool charges the smartphone battery, the INA219 sensor receives output value data in the form of current and voltage. Furthermore, the sensor sends a signal to the ATmega328 to be converted and displayed as data on the LCD so that users can see the output value. The test results of the tool, when charging a smartphone battery using Micro USB, showed the average values of voltage, current, and power, respectively, of 11.7 volts, 0.48 amperes, and 5.98 watts. USB Type C shows the average voltage, current, and power values of 11.33 volts, 0.71 amperes, and 8.37 watts, respectively. The comparison of the duration of battery charging time on the manufacturer's Micro USB with the smartphone charging station has a difference of 27 minutes; the comparison of the duration of the smartphone battery charging time using the manufacturer's USB Type C with the smartphone charging station has a difference of 22 minutes.
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