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A Low-Cost Remote Solar Energy Monitoring System for a Buoyed IoT Ocean Observation Platform

机译:用于浮动物联海洋观测平台的低成本远程太阳能监测系统

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This paper describes the design, construction and testing of a low-cost Energy Monitoring System used to remotely monitor the condition of autonomous power generators (i.e. solar panels) for Marine IoT applications. The purpose of the device is to expedite remote troubleshooting, highlight potential problems and identify the need for service/recovery. It consists of a Forward Looking Infrared (FLIR) camera, an 8 megapixel video/stills camera, Raspberry pi Mini-PC, two VE.Direct? to USB interfaces, UHF transceiver, GPS and a power supply. Its method of non-invasive testing involves the transmission of GPS position and time stamped images, as well as infrared images of the Photovoltaic (PV) panels ashore by Slow Scan TV (SSTV). The image is modulated on a UHF carrier wave and received at an internet gateway using a Software Defined Radio (SDR) receiver on a parent buoy. It is then transmitted ashore for demodulation via TCP link across a subsea Ethernet cable. Invasive monitoring is carried out by attaching a USB interface to the Maximum Power Point Tracking (MPPT) Solar Charge Controllers on the buoy. A Linux shell script run on the Mini-PC logs values such as PV Voltage, Battery Voltage, Charge State and Daily Energy Yield from the PV panels. The device aims to reduce costs and downtime, enabling remote decisions to be made, working towards achieving energy continuum.
机译:本文介绍了一种低成本的能源监控系统用于远程监视自主发电机的海洋的IoT应用的条件(即,太阳能电池板)的设计,建造和测试。该装置的目的是加快远程故障排除,发现潜在的问题,并确定了服务/恢复的需要。它由一个前视红外(FLIR)摄像机,800万像素的视频/剧照相机,树莓派迷你PC,二VE.Direct?到USB接口,UHF收发,GPS和电源。其非侵入性测试的方法涉及的GPS位置和时间标记的图像的传送,以及在光伏(PV)通过慢扫描电视(SSTV)面板岸上的红外图像。图像被调制在UHF载波,并在使用定义无线电(SDR)接收机上的父浮标一个软件的因特网网关接收。它然后经由跨过海底以太网电缆TCP链路发送岸上用于解调。创监测通过附着一USB接口上的浮标上最大功率点跟踪(MPPT)太阳能充电控制器进行。在Mini-PC的日志Linux的shell脚本运行值,如光伏电压,电池电压,充电状态和日常能源产量从光伏电池板。该器件旨在降低成本和停机时间,从而实现远程的决定作出,但在实现节能的连续工作。

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