Contactless information interaction of underwater monitoring means using laser communications.

V. Martynov, A. S. Golosnoy, Y. Ksenofontov, M. Shimanskaya, E. Krechetova
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Abstract

The modern policy of the Russian Federation on subsoil use on the Arctic shelf, as well as the need in the coming years to begin exploration and further operation of identified oil and gas fields in accordance with the offshore projects of the South, Arctic and Far Eastern Seas, using domestic equipment, based on universal underwater vehicles (PA) only confirms this. To develop a strategy for the creation of multifunctional equipment, it is necessary to monitor the accuracy characteristics of sensors and measurement methods in the hydrosphere. Based on the results of the studies, it is possible to conclude those preferences that will ensure the greatest effectiveness of measurements in the aquatic environment for the development of the Arctic shelf. The article considers the existing methodology of measurements at the working depths of the world’s oceans and analyses the specified efficiency of sensors, the principle of operation of which covers the use of technologies for creating and functioning in various physical fields.
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基于激光通信的水下监测非接触式信息交互技术。
俄罗斯联邦关于北极大陆架地下利用的现代政策,以及未来几年根据南、北极和远东海上项目开始勘探和进一步开采已确定的油气田的需要,使用基于通用水下航行器(PA)的国产设备,只是证实了这一点。为了制定一项创建多功能设备的战略,有必要监测水圈中传感器和测量方法的准确性特征。根据这些研究的结果,有可能总结出那些将确保在水生环境中对北极大陆架开发进行测量的最大有效性的偏好。本文考虑了世界海洋工作深度的现有测量方法,并分析了传感器的特定效率,其操作原理涵盖了在各种物理领域中创造和发挥作用的技术的使用。
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