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首页> 外文期刊>Diving and hyperbaric medicine: the journal of the South Pacific Underwater Medicine Society >Validation of algorithms used in commercial off-the-shelf dive computer
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Validation of algorithms used in commercial off-the-shelf dive computer

机译:验证商用潜水电脑中使用的算法

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Introduction Whilst the US Navy has been very systematic about validating Navy dive computer algorithms, there has been little documented or published evidence of rigorous testing of the algorithms in commercial off-the-shelf dive computers. This paper reports the evaluation of four algorithms used in these ? Bühlmann ZHL-16C; VPM-B; Suunto-RGBM; EMC-20H ? by comparison with US Navy experimental dives with known decompression sickness outcomes. Methods Three specific tests were developed to test the algorithms' ability to mitigate decompression sickness: Total decompression time; no stop times and first stop depth. Output of commercial decompression algorithms were compared to either the probability of decompression sickness (PsubDCS/sub) results from US Navy man-trials or statistical models derived from PsubDCS/sub data. The algorithms were first tested with default conservative factors, then these factors were adjusted if the tests were not initially passed. The last verification step was to compare the output of the wrist computer with that of the full desktop algorithm. Results This testing indicated that, whilst none of the four passed all of the proposed tests with factory-default conservatism, ZHL-16C and Suunto-RGBM could be made to pass by adjusting user-defined settings. Conclusions Man-trial data on PsubDCS/sub is available to the non-US Navy scientific community for testing of commercial decompression algorithms. This type of validation testing can be very informative on how to best use available commercial dive computers to improve diver safety.
机译:简介尽管美国海军在验证海军潜水计算机算法方面一直非常系统化,但很少有文献或发表的证据可以对商用现成的潜水计算机进行严格的算法测试。本文报告了在这些算法中使用的四种算法的评估。比尔曼ZHL-16C; VPM-B; Suunto-RGBM; EMC-20H?与美国海军具有已知减压病结果的实验​​潜水相比。方法开发了三个具体的测试来测试算法缓解减压病的能力:总减压时间;没有停留时间和第一停留深度。将商业减压算法的输出与美国海军人工试验的减压病概率(P DCS )或从P DCS 数据得出的统计模型进行了比较。首先使用默认的保守因素对算法进行测试,然后如果最初未通过测试,则对这些因素进行调整。最后的验证步骤是将手腕计算机的输出与完整台式机算法的输出进行比较。结果该测试表明,尽管四项测试都没有通过所有建议的具有出厂默认保守性的测试,但是通过调整用户定义的设置,可以使ZHL-16C和Suunto-RGBM通过。结论有关P DCS 的人工试验数据可供非美国海军科学界用于测试商业减压算法。这种类型的验证测试对于如何最好地使用可用的商用潜水计算机以提高潜水员安全性非常有用。

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