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Development of an Acoustic Transceiver for Positioning Systems in Underwater Neutrino Telescopes

机译:水下中微子望远镜定位系统的声学收发器的开发

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In this paper, we present the acoustic transceiver developed for the positioning system in underwater neutrino telescopes. These infrastructures are not completely rigid and need a positioning system in order to monitor the position of the optical sensors of the telescope which have some degree of motion due to sea currents. To have a highly reliable and versatile system in the infrastructure, the transceiver has the requirements of reduced cost, low power consumption, high intensity for emission, low intrinsic noise, arbitrary signals for emission and the capacity of acquiring and processing the received signal on the board. The solution proposed and presented here consists of an acoustic transducer that works in the 20-40 kHz region and withstands high pressures (up to 500 bars). The electronic-board can be configured from shore and is able to feed the transducer with arbitrary signals and to control the transmitted and received signals with very good timing precision. The results of the different tests done on the transceiver in the laboratory are described here, as well as the change implemented for its integration in the Instrumentation Line of ANTARES for the in situ tests. We consider the transceiver design is so versatile that it may be used in other kinds of marine positioning systems, alone or combined with other marine systems, or integrated in different Earth-Sea Observatories, where the localization of the sensors is an issue.
机译:在本文中,我们介绍了用于水下中微子望远镜的定位系统开发的声学收发器。这些基础设施并不完全刚性并且需要定位系统,以便监视望远镜的光学传感器的位置,其由于海流而具有一定程度的运动。在基础设施中具有高度可靠和多功能的系统,收发器具有降低的成本,低功耗,发射的高强度,低的内在噪声,用于发射的任意信号以及获取和处理接收信号的能力木板。提出和呈现的解决方案包括在20-40kHz区域工作的声学传感器,并承受高压(最多500巴)。电子板可以由岸上配置,并且能够以任意信号馈送换能器,并控制具有非常好的时序精度的发送和接收信号。此处描述了在实验室中的收发器中完成的不同测试的结果,以及在原位测试中为其在Antares仪表线中的集成而实施的变化。我们认为收发器设计是如此多才多艺的是,它可以用在其他种类的海上定位系统中,单独或与其他海洋系统结合使用,或者集成在不同的地海观察者中,传感器的定位是一个问题。

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