基于物联网开源堆栈解决方案的太阳能电池数据采集与可视化

Oetomo Sudjana, H. Septanto
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引用次数: 0

摘要

电池储能系统在太阳能发电系统中得到了广泛的应用。它在太阳能发电系统中起着重要的作用。因此,电池性能评估成为一项至关重要的任务。由于长期电池电压数据可以更准确地估计电池的健康状态和退化情况,因此需要开发一种数据采集系统来收集其数据以供进一步研究。本课题主要研究太阳能发电系统中电池电压及其室温、湿度数据采集系统的开发。数据收集通过物联网(IoT)平台进行。采用带有DHT11传感器的ESP8266节点微控制器板作为数据传感的基础。电池电压测量通过模数转换器进行,而DHT11传感器进行室温和湿度测量。此外,树莓派用于访问、处理和可视化测量数据。在软件方面,我们使用消息队列遥测传输(MQTT)作为消息传递协议。对于数据可视化,一个名为Grafana的漂亮的开源界面与InfluxDB时间序列数据库一起使用。这些元素中的每一个都通过Docker容器平台实现,成为一个称为容器的标准化单元。通过数据采集系统采集蓄电池电压及其室温、湿度数据。数据曲线可以在5秒和1分钟内以原始数据和平均数据三种表示方式观察,以平滑曲线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Data Acquisition and Visualization for Solar Power Battery using IoT Open Source Stack Solution
Battery energy storage systems have been broadly used in solar power systems. It plays some important roles in solar power systems. Therefore, battery performance estimation becomes a critical task. Since long-term battery voltage data can estimate the battery’s state-of-health and its degradation more precisely, a data acquisition system necessary to be developed in order to collect its data for further study. This research focuses on the development of a data acquisition system for collecting battery voltage and its room temperature and humidity data of the solar power system. The data collection is conducted through the internet-of-things (IoT) platform. An ESP8266 Node Micro-Controller Unit controller board with a DHT11 sensor is used for the basis of data sensing. The battery voltage measurement is conducted via an analog-to-digital converter, while a DHT11 sensor conducts room temperature and humidity measurements. Besides, a Raspberry Pi is employed for access, process, and visualization of the measured data. On the software side, we use the Message Queuing Telemetry Transport (MQTT) for the messaging protocol. For data visualization, an open-source beautiful interface, called Grafana, is utilized together with the InfluxDB time-series database. Each of those elements is implemented through the Docker container platform to become a standardized-unit called a container. Collecting of the battery voltage and its room temperature and humidity data by the data acquisition system is conducted. The data curve can be observed in three representations, i.e., raw data and mean data in 5 seconds and 1 minute for smoothing the curve.
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