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Acoustic Transmitters for Underwater Neutrino Telescopes

机译:水下中微子望远镜的声发射器

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In this paper acoustic transmitters that were developed for use in underwater neutrino telescopes are presented. Firstly, an acoustic transceiver has been developed as part of the acoustic positioning system of neutrino telescopes. These infrastructures are not completely rigid and require a positioning system in order to monitor the position of the optical sensors which move due to sea currents. To guarantee a reliable and versatile system, the transceiver has the requirements of reduced cost, low power consumption, high pressure withstanding (up to 500 bars), high intensity for emission, low intrinsic noise, arbitrary signals for emission and the capacity of acquiring and processing received signals. Secondly, a compact acoustic transmitter array has been developed for the calibration of acoustic neutrino detection systems. The array is able to mimic the signature of ultra-high-energy neutrino interaction in emission directivity and signal shape. The technique of parametric acoustic sources has been used to achieve the proposed aim. The developed compact array has practical features such as easy manageability and operation. The prototype designs and the results of different tests are described. The techniques applied for these two acoustic systems are so powerful and versatile that may be of interest in other marine applications using acoustic transmitters.
机译:本文介绍了为水下中微子望远镜开发的声发射器。首先,作为中微子望远镜的声学定位系统的一部分,已经开发了声学收发器。这些基础设施不是完全刚性的,需要一个定位系统才能监视由于海流而移动的光学传感器的位置。为了确保可靠和通用的系统,收发器要求降低成本,降低功耗,承受高压(高达500 bar),发射强度高,固有噪声低,发射任意信号以及采集和接收信号的能力。处理收到的信号。其次,已经开发出紧凑的声发射器阵列以校准声中微子检测系统。该阵列能够模仿发射方向和信号形状中超高能中微子相互作用的特征。参数声源技术已用于实现所提出的目标。开发的紧凑型阵列具有实用的功能,例如易于管理和操作。描述了原型设计和不同测试的结果。应用于这两种声学系统的技术是如此强大和通用,可能会在使用声学发射器的其他船舶应用中引起关注。

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