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IEEE 802.11, OpenAir and HomeRF for 2.4 Ghz spread-spectrum wireless data communication within a metal transportation vehicle

机译:金属运输车辆中用于2.4 GHz扩频无线数据通信的IEEE 802.11,OpenAir和HomeRF

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The proliferation of commercial-off-the-shelf (COTS) and low-cost wireless communication technology has expanded into many new applications, many of which are relevant to the international security community. Although most applications of these new wireless technologies are for architectures typical of a business enterprise, the need to wirelessly monitor the transportation of nuclear materials inside a fully enclosed metal transportainer or vehicle is an important use. However, the complexity and changing performance of the different spread-spectrum protocols make a selection between these different wireless technologies difficult. The nature of the problem becomes complex within a highly RF-reflective metal trailer approximating a Faraday cage or metal box. The addition or removal of highly RF-reflective metal containers within this environment further complicates the wireless communication and causes the multipath environment to change. Tests were conducted for different wireless spread-spectrum communication technologies using worst-case scenarios for different configurations (numbers) of metal containers. This paper provides an evaluation of the results of these tests and compares the performance for IEEE 802.11, OpenAir, and HomeRF spread-spectrum protocols of a wireless communication environment typical of metal transportation vehicle which could used to transport nuclear materials.
机译:商用现货(COTS)和低成本无线通信技术的激增已经扩展到许多新应用中,其中许多与国际安全界相关。尽管这些新无线技术的大多数应用是针对企业典型的体系结构,但无线监视完全封闭的金属运输工具或车辆内部核材料的运输的需求仍然是重要的用途。然而,不同扩频协议的复杂性和不断变化的性能使得在这些不同的无线技术之间进行选择变得困难。在接近法拉第笼或金属盒的高射频反射金属拖车中,问题的性质变得复杂。在此环境中添加或移除高RF反射率的金属容器会使无线通信更加复杂,并导致多路径环境发生变化。使用最坏情况的金属容器的不同配置(数量),针对不同的无线扩频通信技术进行了测试。本文提供了对这些测试结果的评估,并比较了可用于运输核材料的典型金属运输车辆无线通信环境中IEEE 802.11,OpenAir和HomeRF扩频协议的性能。

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