基于物联网(IoT)的智能太阳能跟踪器和能量控制

Budi Artono
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引用次数: 0

摘要

根据能源和矿产资源部的数据,到2022年,印度尼西亚的人均用电量将达到1173千瓦时/人。与2021年相比,这一消费率增长了约4%,创下了过去50年来的新高。这必须伴随着发电厂的能源供应,特别是可再生能源,即太阳能,因为这种太阳能发电厂被认为对环境更安全,而且维护时间表最短。此外,它需要最大限度地利用太阳能电池板和实时监控系统,以保持发电厂的可靠性,智能太阳能跟踪器和基于物联网(IoT)的能源控制是解决这一问题的答案。本研究采用PV(光伏)作为系统的电源,并以执行器和伺服电机的形式进行跟踪驱动,跟踪驱动器沿太阳方向运动。该物联网与数据库服务器集成,因此工作人员可以监视和控制设备是否损坏。本研究中的物联网模块采用ESP8266,实现设备控制和中继功能。除了读取电压和电流,无论是输入还是输出,都使用ACS 712电压传感器和电流传感器,不仅如此,还有一个LDR传感器来读取太阳的位置。
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Smart Solar Tracker and Energy Control Based on Internet of Things (IoT)
ndonesia's electricity consumption per capita in 2022 will reach 1,173 kWh/capita sourced from the Ministry of Energy and Mineral Resources. This consumption rate increased by around 4% compared to 2021, as well as a new record high in the last five decades. This must be accompanied by the availability of energy from power plants, especially renewable energy, namely solar energy because this solar power plant is considered safer for the environment and has a minimal maintenance schedule. In addition, it requires maximum utilization of solar panels and a monitoring system in real time so that the reliability of the power plant is maintained, the Smart Solar Tracker and Energy Control Based on Internet Of Things (IoT) are the answer to this problem. This research uses PV (Photovoltaic) as a power source in the system accompanied by a tracker drive in the form of actuators and servo motors that move in the direction of the sun. This IoT is integrated with a database server so officers can monitor and control if the device is damaged. The IoT module in this research uses the ESP8266 which functions for device control and relay. In addition to reading the voltage and current, both incoming and outgoing, use the ACS 712 voltage sensor and current sensor, not only that, there is also an LDR sensor to read the position of the sun.
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发文量
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审稿时长
24 weeks
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