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Radiowave propagation measurements for sharing spectrum between point-to-point microwave radios and personal communications systems

机译:用于在点对点微波收音机和个人通信系统之间共享频谱的Radiowave传播测量

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A CW radiowave propagation experiment was performed to study spectrum sharing possibilities in the New York City region. The results showed that the isolation measured between the microwave and a PCS system on the street was more dependent upon building shadowing and street orientation within the city than on the distance between the two systems for distances less than 20 km. At greater distances, the topography, including intervening hills and the curvature of the Earth which could shield the systems, played a strong role in providing isolation. The system dependent isolation required for sharing could be found even in the conventional main beam direction in locations surrounded by shadowing objects. Conversely, strong signals were often found well away from the main beam. Thus, there was measurable degradation of the microwave antenna discrimination relative to its (free-space) directivity. Closer in, the isolation varied widely, with regions of strong signals popping up in the shadows. The median difference between co-polarized and cross-polarized signal levels was only 7.5 dB. Occasionally, cross-polarized signals were stronger than cc-polarized signals. Statistical area models under-predicted the isolation, missing most sharable regions.
机译:CW RadioVave传播实验进行了研究纽约市地区的频谱共享可能性。结果表明,在街道上的微波和PCS系统之间测量的隔离更依赖于城市内的遮蔽和街道方向,而不是在距离小于20公里的距离之间的距离。在更远的距离下,地形,包括介入山丘和地球的曲率,可以屏蔽系统,在提供隔离方面发挥了很强的作用。即使在由阴影对象围绕的位置处的传统主光束方向,也可以找到共享所需的系统相关隔离。相反,往往远离主光束的强信号。因此,相对于其(自由空间)方向性,可以测量微波天线辨别的可测量降低。靠近,隔离广泛变化,具有强烈信号的区域突出在阴影中。共偏振和交叉极化信号电平之间的中值差仅为7.5dB。偶尔,交叉极化信号比CC极化信号强。统计区域模型预测隔离,缺少最可共享的区域。

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