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Downlink channel modeling for mobile communications with smart antennas at the base station

机译:用于基站智能天线的移动通信的下行链路信道建模

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In this paper, an approach is presented to enable down-link channel modeling for mobile communication systems with smart antennas at the base station (BS). Based on the assumption that the angle of departure (AOD) at the BS is uniformly distributed, closed-form expressions are provided for the probability density function (PDF) of the azimuth angle of arrival (AOA), power spectral density (PSD) and temporal auto-correlation function (ACF), as seen from the mobile station (MS). Simulation results are hereby provided in order to verify the correctness of the derivations. For the proposed model, the level-crossing rate (LCR) and the average duration of fades (ADF) are investigated. All obtained results are also compared with those in case that the BS is equipped with an omnidirectional antenna. The numerical results show that the usage of a smart antenna at the BS will significantly reduce the LCR of the fading envelope, while the ADF increases significantly. Furthermore, an efficient deterministic simulation model is proposed to enable the emulation of the proposed channel model.
机译:在本文中,提出了一种在基站(BS)具有智能天线的移动通信系统中实现下行链路信道建模的方法。基于BS的出射角(AOD)均匀分布的假设,为到达角(AOA),功率谱密度(PSD)和从移动站(MS)看到的时间自相关函数(ACF)。在此提供仿真结果,以验证推导的正确性。对于所提出的模型,研究了电平穿越率(LCR)和平均衰落持续时间(ADF)。还将所有获得的结果与BS配备全向天线的情况进行比较。数值结果表明,在BS处使用智能天线将显着降低衰落包络线的LCR,而ADF则显着增加。此外,提出了一种有效的确定性仿真模型,以能够对所提出的信道模型进行仿真。

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