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A Wideband Frequency-Domain Channel-Sounding System and Delay-Spread Measurements at the License-Free 57- to 64-GHz Band

机译:在免许可的57至64 GHz频段上的宽带频域声道探测系统和延迟扩展测量

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A channel-sounding impulse-response identification system using the swept-frequency method is presented for the 57- to 64-GHz band. The swept-frequency channel sounder offers high time and frequency resolution of 1 ns and 625 kHz, respectively. The high dynamic range (70 dB) and the constant power output enable the nonlinearities of the channel-sounding system to be overcome within the coverage range, which is on the order of a picocell. This paper also reports the measurements and the analysis of wideband propagation data for various indoor radio channels at the 57- to 64-GHz band. The propagation characteristics are assessed for six different propagation environments. The results of the measurements for four environments are compared when horn antennas are employed at both terminal stations, and also when a horn and an omnidirectional antenna are used at the Tx and Rx terminals, respectively. Examining the statistical distributions of the multipath dispersion, the 90th percentile is about the same for both antenna configurations. For all environments under investigation, it was observed that the static delay spread values at the 90th percentile were below 62 ns.
机译:针对57至64 GHz频段,提出了一种使用扫频方法的信道听起来冲激响应识别系统。扫频频道探测仪分别提供1 ns和625 kHz的高时间分辨率和频率分辨率。高动态范围(70 dB)和恒定功率输出使通道声音系统的非线性能够在覆盖范围内被克服,覆盖范围约为微微小区。本文还报告了在57至64 GHz频段内各种室内无线电信道的宽带传播数据的测量和分析。针对六个不同的传播环境评估了传播特性。当在两个终端站都使用喇叭天线时,以及在Tx和Rx终端分别使用喇叭和全向天线时,比较了四种环境的测量结果。检查多径色散的统计分布,两种天线配置的第90个百分位数大致相同。对于所研究的所有环境,观察到在第90个百分位数处的静态延迟扩展值低于62 ns。

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