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Vector channels for smart antennas. Measurements, statistical modeling, and directional properties in outdoor environments

机译:智能天线的矢量通道。室外环境中的测量,统计建模和方向特性

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In wireless communications, smart antenna systems that employ antenna arrays coupled with adaptive signal-processing techniques at the basestation improve capacity, coverage, and trunking efficiency. However, design and performance analysis of smart antenna systems strongly depend on channel propagation characteristics of signals present at the antenna array, the so-called vector channels. Here, variation of narrow-band vector channels (spatial signatures) due to a moving terminal is studied in typical suburban settings. Vector channel measurements are taken using a real-time smart antenna system with a uniform circular array at the basestation and a mobile transmitter at several locations. Two different wireless scenarios, namely, pedestrian and car mobile, are implemented to emulate the random movement of the mobile user. In each scenario, the mobile transmitter locations are chosen so that there exists line-of-sight (LOS), nonline-of-sight (NOLOS), or both LOS and NOLOS (mixed) propagation to the basestation. We find that in all cases, the Beta distribution can be used to empirically represent the spatial signature correlations and that large spatial diversity exists in NOLOS cases compared to LOS cases. Also, direction-of-arrivals mostly do not change much with movement in a suburban environment.
机译:在无线通信中,基站采用天线阵列和自适应信号处理技术的智能天线系统可提高容量,覆盖范围和中继效率。但是,智能天线系统的设计和性能分析在很大程度上取决于天线阵列上存在的信号的信道传播特性,即所谓的矢量信道。在这里,在典型的郊区环境中研究了由于移动终端导致的窄带矢量信道(空间签名)的变化。使用实时智能天线系统进行矢量信道测量,该系统在基站具有均匀的圆形阵列,并在多个位置具有移动发射器。实现了两种不同的无线场景,即行人和汽车移动,以模拟移动用户的随机移动。在每种情况下,都应选择移动发射机的位置,以便存在视线(LOS),非视线(NOLOS)或LOS和NOLOS(混合)传播到基站的情况。我们发现,在所有情况下,都可以使用Beta分布来经验地表示空间特征相关性,并且与LOS案例相比,NOLOS案例中存在较大的空间多样性。同样,到达方向大多不会随着郊区环境中的移动而发生很大变化。

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