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USE OF COMMUNICATIONS BASED TRAIN CONTROL SYSTEMS IN THE PRESENCE OF RADIO FREQUENCY NOISE AND INTERFERENCE

机译:在存在射频噪声和干扰的情况下,在存在通信的列车控制系统

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A common concern with Communications Based Train Control (CBTC) systems is that the wireless subsystem (usually referred to as the data communications subsystem or DCS) is susceptible to radio frequency (RF) interference from the plethora of wireless devices (especially wireless local area networks or WLANs) that generally share the same 2.4 GHz spectrum as that used by the DCS. This concern is investigated in greater detail given the operational histories of two CBTC-equipped public transit lines: NYCT's "L" or Canarsie Line in New York City and the Las Vegas monorail. Measurements of the RF environment in both locations showed a substantial level of activity in the 2.4 GHz band from WLANs and other devices but with no obvious adverse impact on the operational performance of either line. This paper presents RF measurements at 4 locations in New York City and 1 location in Las Vegas, discusses the relative severity of the RF noise and interference environment and explores why both CBTC systems are able to perform in the presence of in-band RF noise and interference without any obvious adverse impact.
机译:基于通信的列车控制(CBTC)系统的共同问题是,无线子系统(通常称为数据通信子系统或DCS)易受来自无线设备过多的射频(RF)干扰(尤其是无线局域网或WLAN)通常与DCS使用的相同的2.4 GHz频谱。考虑到两个CBTC的公共交通线路的运营历史:NYCT的“L”或纽约市和拉斯维加斯单轨无线电话,更详细地调查了这种担忧。两个位置的RF环境的测量显示了来自WLAN和其他设备的2.4 GHz频段中的大量活动水平,但对任一线的操作性能没有明显的不利影响。本文介绍了纽约市4个地点的RF测量,在拉斯维加斯的1个地点,讨论了RF噪声和干扰环境的相对严重性,并探讨了为什么CBTC系统能够在带内射频噪声的存在下执行干扰没有任何明显的不利影响。

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