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Underwater Locator Beacon signal propagation on tropical waters

机译:水下定位信标信号在热带水域的传播

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In the last 12 years, about 16 crashes involving commercial aircraft have ended in sea-crashes and dozens of maritime accidents resulting in sunken vessels occur every year. At the instant the aircraft Flight Data Recorder (FDR), or the ship Voyage Data Recorder (VDR), comes in contact with water, a locating device called ULB (Underwater Locator Beacon) starts a continuous emission of acoustic signals, or pings, for a minimum period of 30 days. After the crash of the Air France 447, in 2009, a discussion began about the effectiveness of the pingers in assisting in the location of “black boxes” and whether they should undergo some kind of modification to improve its capabilities. In order to understand the propagation of the pulses emitted by the ULBs in regions of past accidents, two fundamental aspects of the irradiated signal quality are analyzed: the components and specifications of pingers used in “black boxes” - as for example the acoustic intensity and the emitted waveform shape - and the physical characteristics of the medium and in what form it influences in the transmission of the pulses during its propagation by the ocean. This work has as main objective to contribute to the quantification of the detection capability of ULBs emitted pings in different scenarios /configurations and hopefully being able to clarify major issues regarding ULBs signal propagation assisting in the improvement of search and rescue (SAR) operational methodologies and in the development of “black box” acoustic signals detection instruments.
机译:在过去的12年中,约有16架商用飞机的坠机事故以海啸结束,每年发生数十起海事事故,导致船只沉没。当飞机飞行数据记录器(FDR)或船舶航行数据记录器(VDR)与水接触时,称为ULB(水下定位信标)的定位设备会连续发出声信号或ping最少30天。在法航447坠毁之后,2009年,人们开始讨论如何在“黑匣子”的位置上使用pinger进行有效性检查,以及是否应进行某种修改以提高其能力。为了了解ULB发射的脉冲在过去事故区域中的传播,分析了辐射信号质量的两个基本方面:“黑匣子”中使用的pinger的组件和规格-例如声强和发射的波形形状-以及介质的物理特性,以及介质以什么形式影响海洋传播过程中脉冲的传输。这项工作的主要目标是有助于量化在不同情况/配置下发射的ping信号对ULB的检测能力,并希望能够阐明与ULB信号传播有关的主要问题,从而有助于改进搜索和救援(SAR)操作方法和在开发“黑匣子”声信号检测仪器方面。

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