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Level-Crossing Rate and Average Duration of Fades in Non-Isotropic Hoyt Fading Channels with Applications to Selection Combining Diversity

机译:非各向同性Hoyt衰落信道中的电平穿越速率和衰落的平均持续时间及其在选择组合分集中的应用

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In this paper, we investigate the second-order statistics of Hoyt fading channels under non isotropic scattering scenarios. Assuming an asymmetrical Doppler power spectral density (PSD), we derive, in the form of single finite-range integrals, expressions for the level-crossing rate (LCR) and average duration of fades (ADF). These new results are then applied to obtain the LCR and ADF of selection combining (SC) diversity over non-isotropic Hoyt channels. In addition to their importance for studying the system performance and characterizing the dynamic behavior of multipath fading channels, the formulas derived are general in that they can be applied to many non-isotropic scattering situations. Furthermore, they are shown to unify some existing results for Rayleigh and Hoyt channels. The validity of the analytical expressions is verified by means of computer simulations where a mobile-to-mobile (M2M) propagation scenario is considered in which the angle of departure (AOD) and angle of arrival (AOA) of multipath components are both described by the von Mises distribution.
机译:在本文中,我们研究了在各向同性散射情况下Hoyt衰落信道的二阶统计量。假设非对称多普勒功率谱密度(PSD),我们以单个有限范围积分的形式得出平交速率(LCR)和平均衰落持续时间(ADF)的表达式。然后,将这些新结果应用于获得非各向同性Hoyt信道的LCR和ADF选择组合(SC)分集。除了对研究系统性能和表征多径衰落信道的动态行为的重要性外,所推导的公式也很通用,因为它们可用于许多非各向同性的散射情况。此外,它们显示为统一了Rayleigh和Hoyt信道的一些现有结果。分析表达式的有效性通过计算机模拟进行了验证,其中考虑了移动到移动(M2M)传播场景,其中多径分量的离开角度(AOD)和到达角度(AOA)均由下式描述:冯·米塞斯分布。

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