野外测量的WSD-DTT保护比在室外和室内的参考几何形状

P. Talmola, Juha Kalliovaara, J. Paavola, R. Ekman, Atte Vainisto, Niko Aurala, H. Kokkinen, K. Heiska, R. Wichman, J. Poikonen
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引用次数: 13

摘要

目前对空白空间认知无线电操作的普遍看法是,它们应该使用地理位置数据库来确定它们在任何给定位置的频带和最大发射功率,以便辐射到广播接收器的干扰可以忽略不计。为了估计这种干扰的水平,物理参考几何形状和路径损耗估计已经在共定位设备之间提出。在本文中,我们介绍了在数字地面电视测试网络中对室内和室外参考几何场景进行的测量活动的结果。为了避免电视接收中的可见干扰,我们应用主观误差标准,对白色空间设备的最大相对发射功率进行了实际估计。该研究适用于各种主要和次要传输和接收场景,其结果也可以扩展到估计报告测量中未考虑的信号配置的保护比率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field measurements of WSD-DTT protection ratios over outdoor and indoor reference geometries
A currently prevalent view of the operation of white space cognitive radios is that they should use geolocation databases to determine their frequency band and maximum transmission power in any given location so that interference radiated to broadcast receivers is negligible. To estimate the level of such interference, physical reference geometries and path loss estimates have been proposed between co-located devices. In this paper we present results of a measurement campaign conducted over indoor and outdoor reference geometry scenarios in a digital terrestrial television test network. Applying a subjective error criterion, we provide practical estimates on the maximum relative transmit powers for white space devices in order to avoid visible interference in television reception. The study applies to various primary and secondary transmission and reception scenarios, and its results can be extended also to estimate protection ratios for signal configurations not considered in the reported measurements.
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