首页> 外文期刊>IEEE Transactions on Vehicular Technology >Propagation considerations for the design of an indoor broad-band communications system at EHF
【24h】

Propagation considerations for the design of an indoor broad-band communications system at EHF

机译:在EHF上设计室内宽带通信系统的传播注意事项

获取原文
获取原文并翻译 | 示例

摘要

This paper reports the measurement and analysis of wideband propagation data for indoor radio channels at 40 GHz. Propagation characteristics are reported for two open-concept office areas of different sizes in two different buildings. Also, the results of measurements in one building are compared for system configurations in which either an omnidirectional or a narrowbeam antenna is employed at a base station for communications to multiple work stations with omnidirectional antennas. It is reported that, on a statistical basis, at the 90th percentile, multipath dispersion is the same for the two base-station antenna radiation patterns. Dispersion was, however, found to be lower in the smaller of the two measurement areas, where transmit/receive ranges were shorter. The 90th percentile of static RMS delay spread for this area was 19 ns compared with 45 ns for the larger area. Multipath spreads at the -25 dB relative power level were about 370 ns, compared with 140 ns in the larger area. In the larger area, global propagation loss was found to be well modeled by the one-way propagation equation with different range exponents (1.5 and 4) before and after a breakpoint at a range of 25 m. In the smaller area, the range exponent was found to be greater, being equal to 3.5. This is considered to be a result of reduced multipath infill, which would accompany the reduced dispersion. Temporal fading on fixed links with omnidirectional antennas was found to have depths such that a 14-dB fade margin is required for 99% reliability. Finally, spatial variations in received power at a given range indicated the requirement for a power margin between 4-7 dB for 99% reliability. These results are used in a link budget example for a broad-band indoor extremely high frequency (EHF) digital communications system.
机译:本文报告了40 GHz室内无线信道的宽带传播数据的测量和分析。报告了在两个不同建筑物中两个不同大小的开放概念办公室区域的传播特性。同样,在一栋建筑物中的测量结果针对系统配置进行了比较,在该系统配置中,在基站采用全向或窄波束天线与多个具有全向天线的工作站进行通信。据报告,在统计基础上,在两个基站天线辐射图的第90个百分点处,多径色散是相同的。但是,在两个发射/接收范围较短的测量区域中,较小的区域发现色散较低。该区域的静态RMS延迟扩展的90%为19 ns,而较大区域为45 ns。 -25 dB相对功率水平下的多径扩展约为370 ns,而较大区域中为140 ns。在更大的区域中,发现在25 m断点之前和之后,具有不同范围指数(1.5和4)的单向传播方程可以很好地模拟全局传播损失。在较小的区域中,发现范围指数较大,等于3.5。这被认为是减少多径填充的结果,这将伴随色散降低。发现使用全向天线的固定链路上的时间衰落具有一定的深度,以使99%的可靠性需要14dB的衰落余量。最后,在给定范围内接收功率的空间变化表明,对于99%的可靠性,要求功率裕度在4-7 dB之间。这些结果用于宽带室内极高频(EHF)数字通信系统的链路预算示例中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号