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WIRELESS LAN TECHNOLOGY FOR PROGNOSTICS AND HEALTH MONITORING

机译:用于预测和健康监测的无线局域网技术

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摘要

RLW, Inc. contracted with GE Aircraft Engines on behalf of NASA, Glenn to conduct a tradeoff study comparing available and evolving wireless local area network (WLAN) technologies for applicability to gas turbine engine control functions. A variety of WLAN technologies were surveyed and compared for their performance relative to a number of critical to quality (CtQ) factors defined by the customer. Each of the CtQs were assigned a weighting factor and technologies were assigned a figure of merit (FoM) against each of the CtQs. A spreadsheet model was constructed to allow rapid conduct of sensitivity studies to assess the effects of CtQ weighting and technology FoM on a rank-order comparison of the technologies. The study initially focused on both physical/medium access control (MAC) technologies and on application-level protocol technologies that could use a variety of physical/MAC technologies. The study was finally limited to assess only physical/MAC technologies including: IEEE 802.11a, IEEE 802.11b, HomeRF2, Bluetooth, and HiperLAN/2. This paper will describe the CtQ factors considered, each of the WLAN technologies, the spreadsheet model developed to conduct tradeoff studies, and the rank-order selection of the candidate technologies, identifying several viable options for consideration for engine applications.
机译:RLW,Inc.代表NASA Glenn与GE Aircraft Engines签订合同,进行权衡研究,比较可用和发展中的无线局域网(WLAN)技术在燃气涡轮发动机控制功能中的适用性。相对于客户定义的许多关键质量(CtQ)因素,调查了各种WLAN技术并比较了它们的性能。每个CtQ被分配了一个加权因子,技术被分配了针对每个CtQ的品质因数(FoM)。构建电子表格模型以允许快速进行敏感性研究,以评估CtQ权重和技术FoM对技术的排名比较的影响。该研究最初集中在物理/介质访问控制(MAC)技术以及可以使用多种物理/ MAC技术的应用程序级协议技术上。最终,这项研究仅限于评估物理/ MAC技术,包括:IEEE 802.11a,IEEE 802.11b,HomeRF2,蓝牙和HiperLAN / 2。本文将描述所考虑的CtQ因素,每种WLAN技术,为进行权衡研究而开发的电子表格模型以及候选技术的等级选择,确定一些可行的方案供发动机应用考虑。

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