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Automatic observation system of Polar Multi-parameter buoy based on Iridium remote Control

机译:基于铱星遥控的极地多参数浮标自动观测系统

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With the gradual rise of global sea level in recent years, the north and south poles, as the largest freshwater reserves, have been concerned by more and more scholars in various research fields. Among them, the melting of sea ice in the Arctic and subarctic regions is the most obvious annual cycle change in the world. In order to monitor the sea water quality, the melting state of sea ice and the drift track of sea ice, a comprehensive marine monitoring equipment for multi-layer sampling and observation of sea water is designed in this paper. The upper computer display software is compiled by VS to measure chlorophyll, dissolved oxygen and temperature and salinity of fixed horizon depth for a long time. At the same time, the ice thickness and atmospheric observation parameters in the ice area where the body is located are measured. During the whole working cycle, the trajectory of sea ice in which it is located is observed. The polar environment is bad, and in order to ensure that the system works for an ice age, it is designed to transmit the child mother system. A week-long ice lake test was carried out on the system in January 2018. The interval between collection and transmission is 60 minutes. Combined with the daily sensor aging experiment and the ice lake test data, it is shown that the system can be used in the polar region with very low temperature and work for a long time.
机译:近年来,随着全球海平面的逐渐上升,作为最大淡水储量的南北极成为越来越多的研究领域的学者关注的焦点。其中,北极和亚北极地区的海冰融化是世界上最明显的年度周期变化。为了监测海水的质量,海冰的融化状态和海冰的漂移轨迹,设计了一套综合的海洋监测设备,对海水进行多层采样和观测。上位机显示软件由VS编译,可长时间测量叶绿素,溶解氧以及固定水平深度的温度和盐度。同时,测量人体所在冰区的冰厚和大气观测参数。在整个工作周期中,可以观察到其所在的海冰轨迹。极地环境很恶劣,为了确保该系统在冰河时期工作,它被设计为传输子母系统。该系统于2018年1月进行了为期一周的冰湖测试。收集和传输之间的间隔为60分钟。结合每天的传感器老化实验和冰湖测试数据,表明该系统可以在极低温度的极地地区使用,并且可以长时间工作。

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