基于Boltuino平台的物联网智能太阳能电池板监控系统

Ashim Mondal, Md Jishan Ali, P. Dutta
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引用次数: 3

摘要

可再生能源已被证明是可靠的,它们也被认为是满足我们日益增长的能源需求的最佳途径。人们对太阳能的兴趣日益浓厚,成本和功能费用不断增加,这导致了能源监测需求背后的一些令人信服的解释。今天,太阳能光伏发电(PV)是可再生能源市场上最新和最光明的进步,它减少了对化石燃料副产品的需求。为了最大限度地利用太阳能发电,重要的是要注意如何保存和如何使用它。本项目工作的目的是在手机或电脑上远程实时显示光伏参数,管理与光伏板相连的数据和负荷,并通过图形查看统计数据。本作品采用20瓦太阳能电池板作为光伏组件,采用Boltuino (Bolt IoT+ Arduino)器件作为控制电路,采用电流传感器、电压传感器、温湿度传感器进行太阳能参数采集。Arduino Uno收集电流传感器、电压传感器、温度和湿度传感器的数据,并通过串行通信发送给BOLT。在BOLT中接收到统计数据后,它显示所有太阳能参数并生成一个图形,该图形存储所有信息。警报信息将通过短信发送到注册的手机上,并能够监控来自光伏模块的数据,并在出现短路或断电等不希望出现的情况时远程操作系统。
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IoT Enabled Smart Solar Panel Monitoring System Based on Boltuino Platform
Renewable energy sources have been proven to be reliable, and they are also thought to be the best way to meet our growing energy needs. The rising interest in solar power, increasing costs and functional expenses are led to a few convincing explanations behind the requirement for energy monitoring. Today, Solar Photovoltaic (PV) power is the newest and brightest advancement in the renewable energy market that reduces the requirement of fossil fuel by-products. To get the most out of solar power generation, it's important to pay a lot of attention to how it's kept and how it's used. The purpose of this project work is to display real-time PV parameters on mobile or computer remotely, manage the data and load which is connected with the PV panel and examine the statistics via graph. In this work 20-watt solar panel is used as a PV module, Boltuino (Bolt IoT+ Arduino) device is used as a controller circuit and Current sensor, Voltage sensor, Temperature & Humidity sensor are used for solar parameter collection. The Arduino Uno collects the current sensor, voltage sensor, temperature & humidity sensor data and sends it to the BOLT via serial communication. Following receipt of the statistics in BOLT, it displays all of the solar parameters and generates a graph, which stores all of the information. The alert message will be sent to the registered mobile phone through SMS, and be able to monitor the data from the PV module and remotely operate the system in the event of any unwanted situation like a short circuit or voltage cut out.
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