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Spherical outdoor to indoor power spectrum model at the mobile terminal

机译:移动终端的室外到室内球形功率谱模型

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Mobile terminals are often used indoor with the base station outdoors. At the mobile terminal the major part of the signal energy comes through openings in the building such as windows. Typically, only one of the sides in a room has windows, and seldom does a room have windows on all sides. Hence, the dominating signal can be expected to arrive at the mobile terminal from a narrow range of angles. Mobile terminal antennas used next to the head in the speaking position will be directional due to the fact that part of the radiation pattern facing the head will be attenuated and reflected. Having a directive antenna in a directive environment, the performance will depend on the orientation of the antenna in the radio environment. A new statistical spherical outdoor to indoor power spectrum model has been proposed to be able to calculate the directional performance of mobile terminals with a single or multiple antennas. The model consists of a major scattering area in one direction and more uniformly distributed minor scatterers in the other directions. A verification of the proposed model was performed and 60 data sets of spherical power spectrum measurements were collected in a typical urban environment. Using the new model, the directional performance of mobile terminal antennas including a human operator has been investigated through directional mean effective gain, branch power ratio, and correlation calculations using spherical radiation pattern measurements of a mobile terminal including the effect of 42 different persons. The accuracy of the calculated values was verified by directly measured values using 200 persons walking with the mobile terminal in the same office-like environments as where the spherical power spectrum measurements were performed.
机译:移动终端通常在室内使用,而基站则在室外使用。在移动终端,信号能量的主要部分来自建筑物的开口,例如窗户。通常,房间中只有一侧有窗户,很少有房间的所有侧面都有窗户。因此,可以预期主要信号从狭窄的角度范围到达移动终端。在讲话位置中靠近头部使用的移动终端天线将是定向的,因为面对头部的辐射图的一部分将被衰减和反射。在定向环境中拥有定向天线,性能将取决于无线电环境中天线的方向。已经提出了一种新的统计球形室外到室内功率谱模型,该模型能够计算具有单个或多个天线的移动终端的定向性能。该模型由一个方向上的主散射区和另一方向上的更均匀分布的次散射体组成。对提出的模型进行了验证,并在典型的城市环境中收集了60个球形功率谱测量数据集。使用新模型,已经通过定向平均有效增益,分支功率比以及使用包括42个不同人员的影响的移动终端的球形辐射方向图测量结果进行相关计算,研究了包括人工操作员在内的移动终端天线的定向性能。在与执行球形功率谱测量相同的办公室环境中,使用200个人与移动终端一起行走,通过直接测量的值来验证计算值的准确性。

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