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NETWORK CONNECTIONS BEYOND IEEE 802.11

机译:IEEE 802.11之外的网络连接

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More and more aircraft system designs are incorporating a local-area-network (LAN) using either Fibre Channel (FC) or Ethernet. To date there hasn't been a means for creating a FC node connection between an airborne network and a ground based FC network or for creating a reliable high-speed Ethernet connection between air and ground. Ethernet connections have had some success by using the IEEE 802.11 wireless LAN for these types of connections; however, these connections suffer from many inherent problems using this standard. Problems include the lack of telemetry spectrum control, security validation, high-speed data transfer efficiency, and channel acquisition time. This paper will describe a methodology that utilizes the IRIG-106 PCM standard for communicating between aircraft and ground-based networks. PCM can solve the aforementioned problems and it enables the user to take advantage of the many ARTM advances in PCM telemetry technology [1]. One such advance in technology has been the use of SOQPSK (Tier 1) or Multi-h CPM (Tier 2) to enable the user to effectively double or more their bandwidth efficiency compared to PCM/FM (or CPFSK) (Tier 0).
机译:越来越多的飞机系统设计正在使用光纤通道(FC)或以太网融合局域网(LAN)。迄今为止,在空中网络和基于地面的FC网络之间或用于在空气和地之间创建可靠的高速以太网连接,还没有用于创建FC节点连接的方法。以太网连接通过使用IEEE 802.11无线局域网进行了一些成功,用于这些类型的连接;但是,这些连接遭受了使用本标准的许多固有问题。问题包括缺乏遥测谱控制,安全验证,高速数据传输效率和信道采集时间。本文将描述利用IRIG-106 PCM标准的方法,用于在飞机和地面网络之间进行通信。 PCM可以解决上述问题,它使用户能够利用PCM遥测技术的许多ARTM进步[1]。技术的一个这样的前进已经使用SOQPSK(第1级)或多H CPM(Tier 2)来使用户能够与PCM / FM(或CPFSK)(层0)相比有效地双人或多个带宽效率。

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