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Fading channel characterization for oscillating-beam-pattern smart antennas using geometric-based stochastic channel modeling with circular coverage area

机译:利用圆形覆盖区域使用基于几何随机通道建模的振荡光束模式智能天线的衰落信道表征

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Whenever the channel coherence time is less than the symbol duration, a mobile station (MS) receiver can exploit time diversity to enhance its probability of error performance. One way to ensure a channel coherence time less than the symbol duration is by use of a carefully controlled oscillating-beam antenna array at the base station (BS). Here, beam pattern movement creates small coherence times. In this paper, with an oscillating-beam-pattern antenna array at the BS, the time varying channel is modeled to evaluate the channel coherence time and the available diversity in the MS. Here, a geometric-based stochastic channel model (GSCM) is used, and a circular coverage area is assumed. For a mid-sized city center, coherence times are shown to correspond to 1/7/sup th/ the symbol duration, suggesting a 7-fold time diversity is available at the MS when the BS's antenna array pattern is carefully controlled.
机译:每当信道相干时间小于符号持续时间,移动台(MS)接收器可以利用时间分集来增强其错误性能的概率。一种方法来确保小于符号持续时间的信道相干时间是在基站(BS)处的仔细控制的振荡束天线阵列。这里,光束图案运动产生小的相干时间。在本文中,在BS处具有振荡束图案天线阵列,模拟时间变化信道以评估MS中的信道相干时间和可用分集。这里,使用基于几何的随机信道模型(GSCM),并且假设圆形覆盖区域。对于中尺寸的城市中心,相干时间显示对应于1/7 / SUP /符号持续时间,建议在仔细控制BS的天线阵列模式时在MS上获得7倍的时间分集。

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