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Experimental evaluation of a dedicated underwater loudhailer for diver warning

机译:专用水下扬型师潜水员警告的实验评价

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To improve port security capability there is a need for systems for detection, warning and deterrence of unwanted divers in harbour environments. In a complex environment such as a harbour, these topics present challenging problems and as such are subject to research and development. Already a few dedicated systems are commercially available, whether for underwater intruder detection, warning or deterrence. However, due to the complex nature of underwater environments and the difficulties of testing underwater, there is still a gap in knowledge on the performance of each of these systems in the actual operational environments of interest, particularly warning and deterrence systems. A commercially available underwater loudhailer has been tested by order of the NL MoD in the naval harbour of Den Helder, the Netherlands. The main purpose of the test was to assess the underwater speech intelligibility of the loudhailer for various distances in a realistic port environment. Furthermore, apart from range, the main dependence of the intelligibility on the environment has been investigated. There are many types of standard tests available to determine speech intelligibility of loudhailing systems. However, these tests are developed for airborne sound. The specific underwater environment imposes many constraints that make the majority of the standard tests of limited use. Therefore, the tests have been carefully selected and made suitable for underwater utilization. During first experiments with the loudhailer performed in December 2009 a fifty percent sentence intelligibility was obtained up to a distance of 150 meter, which means that on average each message needs to be repeated once. Intelligibility scores were highly variable, also for fixed ranges. Unlike what could be expected based on knowledge from airborne sounds, the correlation between the results of various tests was very poor. All this can probably be attributed to the noisy underwater environment and the tempo- - ral variability of the background noise levels.
机译:为了提高港口安全功能,需要系统的港口环境中不需要的潜水员检测,警告和威慑。在诸如港口的复杂环境中,这些主题存在挑战性问题,因此可能会受到研发的影响。已经有一些专用系统是商业上可用的,无论是水下入侵者检测,警告或威慑。然而,由于水下环境的复杂性和在水下测试的困难,仍然有关于这些系统中每个系统的性能的知识差距,特别是警告和威慑系统。商业上可获得的水下扬声器已经通过NAN Helder,荷兰的海军港口的NL Mod的顺序进行了测试。测试的主要目的是评估扬声器的水下语音清晰度,以便在逼真的港口环境中进行各种距离。此外,除了范围之外,还研究了对环境的可理解性的主要依赖性。有许多类型的标准测试可用于确定扬声器系统的语音可懂度。但是,这些测试是为空中声音开发的。具体的水下环境施加了许多限制,使大多数有限使用的标准测试。因此,已经精心地选择了测试,并适合水下利用率。在2009年12月在2009年12月进行的扬声器进行的第一个实验期间,获得了5%的句子可懂度,距离为150米,这意味着平均每条消息都需要重复一次。可智能性评分高度变化,也适用于固定范围。与基于空中声音的知识的预期不同,各种测试结果之间的相关性非常差。这一切可能归因于嘈杂的水下环境和背景噪声水平的速度变化。

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