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Radar, TV and Cellular Bands: Which Spectrum Access Techniques for Which Bands?

机译:雷达,电视和蜂窝频段:哪些频段的频谱接入技术?

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摘要

Opportunistic access has been considered by regulators for a number of different spectrum bands. In this paper, we discuss and qualitatively evaluate techniques used in the discovery of spectrum opportunities, also called white spaces, in the radar, TV, and cellular bands. These techniques include spectrum sensing, cooperative spectrum sensing, geolocation databases, and the use of beacons. We make the case that each of the three bands considered calls for a different set of spectrum access techniques. While TV bands are well matched to the adoption of geolocation databases, a database-assisted spectrum sensing mechanism may represent the most efficient solution to exploit the spectrum holes in radar bands. We drew this conclusion based on a multitude of factors, such as the radar antennas' constant motion, and the absence of a hidden node problems in these bands. The unpredictability of cellular systems, on the other hand, calls for a more coordinated spectrum access approach, namely beacon signaling, that could be implemented using the already established cellular infrastructure and spare bits of its logical channels.
机译:监管机构已考虑对许多不同的频谱进行机会性接入。在本文中,我们讨论并定性评估了在雷达,电视和蜂窝频段中发现频谱机会的技术,也称为空白空间。这些技术包括频谱感测,协作频谱感测,地理位置数据库以及信标的使用。我们假设所考虑的三个频带中的每一个都需要一套不同的频谱接入技术。尽管电视频段与地理位置数据库的采用非常匹配,但数据库辅助的频谱感应机制可能是利用雷达频段频谱漏洞的最有效解决方案。我们基于多种因素得出此结论,例如雷达天线的恒定运动以及这些频段中没有隐藏节点问题。另一方面,蜂窝系统的不可预测性要求一种更加协调的频谱访问方法,即信标信令,可以使用已经建立的蜂窝基础结构及其逻辑信道的备用位来实现。

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