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Analytical and Experimental Performance Evaluation of Antenna Misalignment in Ka-band Wireless Links

机译:Ka波段无线链路中天线未对准的分析和实验性能评估

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摘要

In this paper, we propose a model for the effect of misalignment of antennas due to mechanical vibrations and experimentally validate its accuracy in a Ka-band (26-40 GHz) transmission link. Our approach provides a valuable tool that is analytically tractable and physically simple to implement. To highlight the applicability of the model, a setup based on a centralized radio access network (C-RAN) transmitting and receiving wireless signals in the Ka-band is implemented. With this tool, the robustness of 5G networks to antenna misalignments can be evaluated in terms of bit-error rate. We show how the presence of misalignment in this type of systems induces an error floor observable in the bit-error-rate performance. A simple static decision threshold is implemented taking into account the amount of displacement and, directly related to that factor, on the expected number of fades per unit time. The closed-form expressions derived through this paper are in perfect agreement with the experimental measurements taken from the implemented system.
机译:在本文中,我们提出了一种因机械振动而导致的天线未对准影响的模型,并通过实验验证了其在Ka波段(26-40 GHz)传输链路中的准确性。我们的方法提供了一种有价值的工具,该工具在分析上易于处理并且在物理上易于实现。为了突出该模型的适用性,实现了基于在Ka波段中发送和接收无线信号的集中式无线接入网络(C-RAN)的设置。使用此工具,可以根据误码率评估5G网络对天线未对准的鲁棒性。我们展示了这种类型的系统中未对准的存在如何引起误码率性能中可观察到的错误底限。一个简单的静态决策阈值是在考虑到位移量的基础上实现的,并且与该因子直接相关的是每单位时间的预期衰落数。通过本文得出的闭式表达式与从已实现系统获得的实验测量值完全吻合。

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