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Prediction of radiowave propagation in urban microcell environments using ray tracing methods

机译:使用射线追踪方法预测城市微蜂窝环境中的无线电波传播

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The use of microcells has been proposed as a method of providing high capacity cellular radio systems. The cell base station antenna is positioned below the rooftop height of the surrounding buildings in order to constrain the radio coverage to a small area. The aim of the work described in this paper is to develop theoretical models which can predict received signal powers in urban microcells. Theoretical models should have wider applicability than empirical methods because they are not based on measurements in a particular situation. In this paper predictions from a computer program are compared with experiments to verify the program. The experiments are carried out at microwave frequencies in the laboratory using idealised scaled obstacles. The scaling factor arises because the experimental frequency of 29 GHz is higher than that used in current cellular radio systems and the experimental wavelength is correspondingly reduced. This means that the dimensions of the experiment are scaled down so that measurements can be taken in the laboratory. This experimental method cannot include the detail of a real urban environment but allows the controlled testing of the computer program and has the advantages of manageable dimensions, repeatability and flexibility. Individual parts of the propagation problem can be isolated and their effect studied.
机译:已经提出了使用微小区作为提供高容量蜂窝无线电系统的方法。小区基站天线位于周围建筑物的屋顶高度下方,以便将无线电覆盖范围限制在较小的区域。本文所述工作的目的是开发可以预测城市微蜂窝中接收信号功率的理论模型。理论模型应该比经验方法具有更广泛的适用性,因为它们不是基于特定情况下的测量结果。在本文中,将计算机程序的预测与实验进行比较,以验证程序。实验是在实验室中使用理想的比例缩放障碍物在微波频率下进行的。产生比例因子是因为29 GHz的实验频率高于当前蜂窝无线电系统中使用的频率,并且实验波长相应减小。这意味着按比例缩小了实验的尺寸,以便可以在实验室中进行测量。这种实验方法不能包含真实城市环境的细节,但可以对计算机程序进行受控测试,并且具有尺寸易于管理,可重复性和灵活性的优点。可以将传播问题的各个部分隔离开来,并研究其影响。

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