Optimal pinging frequencies in the search for an immobile beacon

David J. Eckman, L. Maillart, A. Schaefer
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引用次数: 6

Abstract

ABSTRACT We consider a search for an immobile object that can only be detected if the searcher is within a given range of the object during one of a finite number of instantaneous detection opportunities; i.e., “pings.” More specifically, motivated by naval searches for battery-powered flight data recorders of missing aircraft, we consider the trade-off between the frequency of pings for an underwater locator beacon and the duration of the search. First, assuming that the search speed is known, we formulate a mathematical model to determine the pinging period that maximizes the probability that the searcher detects the beacon before it stops pinging. Next, we consider generalizations to discrete search speed distributions under a uniform beacon location distribution. Lastly, we present a case study based on the search for Malaysia Airlines Flight 370 that suggests that the industry-standard beacon pinging period—roughly 1 second between pings—is too short.
搜索固定信标时的最佳ping频率
我们考虑搜索一个固定的物体,只有当搜索者在有限数量的瞬时检测机会之一的给定范围内才能被检测到;也就是说,“ping”。更具体地说,在海军搜寻失踪飞机的电池供电飞行数据记录仪的推动下,我们考虑了水下定位信标ping信号频率与搜寻时间之间的权衡。首先,假设搜索速度已知,我们制定了一个数学模型来确定ping周期,该周期使搜索器在停止ping之前检测到信标的概率最大化。接下来,我们考虑在均匀信标位置分布下的离散搜索速度分布的推广。最后,我们提出了一个基于马来西亚航空公司370航班搜索的案例研究,该案例表明,行业标准的信标ping周期(ping之间大约1秒)太短了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
IIE Transactions
IIE Transactions 工程技术-工程:工业
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审稿时长
4.5 months
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