具有共信道和相邻信道干扰约束的电视频段的二次频谱接入

Lei Shi, K. Sung, J. Zander
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引用次数: 22

摘要

近年来,VHF/UHF频段作为二次频谱接入候选频段的潜力,即所谓的“电视空白空间”,已经得到了深入的研究。然而,多个二次用户累积的干扰对不同相邻信道的影响目前还没有得到很好的研究,更不用说同信道和相邻信道的联合干扰的影响了。本文提出了一个框架,用于评估符合地理位置数据库概念的便携式和移动设备的二次频谱重用机会。机会是根据可以同时访问“电视空白空间”的次要用户的最大数量来评估的。特别强调了保护电视接收机免受有害的综合干扰,这些干扰不仅来自同一频道电视覆盖范围之外的二次用户,也来自在相邻不同电视频道上工作的电视接收机附近的用户。解决了一个优化问题,以最大限度地允许在不同位置的可用电视频道的二次用户的数量。通过对最优方案干扰特性的深入分析,发现相邻信道干扰的累积效应对电视接收的影响占主导地位,特别是在二次设备发射功率有限的情况下。这表明有可能实现对电视频段的近乎最佳利用,用于二次重用,而无需明确协调部署在广泛地理区域的二次用户的同信道干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secondary spectrum access in TV-bands with combined co-channel and adjacent channel interference constraints
The potential of VHF/UHF band as a candidate for secondary spectrum access, so called “TV white spaces”, has been intensively investigated in recent years. However, the impact of the accumulated interference from multiple secondary users on different adjacent channels has not been well studied thus far, let alone the effect of combined interference from both co-channel and adjacent channels. This paper presents a framework for assessing secondary spectrum reuse opportunities for portable and mobile devices that comply with geo-location database concepts. The opportunity is evaluated in terms of the maximal number of secondary users that can access the “TV white space” simultaneously. Particular emphasis is given to the protection of TV receiver from harmful aggregate interference originated from not only the secondary users outside the TV coverage on the same channel but also those close to the TV receivers operating on different adjacent TV channels. An optimization problem is solved to maximize the number of secondary users admitted to the available TV channels at different locations. Through in-depth analysis of the interference characteristics of the optimal solution, it is identified that the cumulative effect of adjacent channel interferences has the dominant impact on TV reception, particularly for the case of secondary devices with limited transmit power. This suggests the possibility to achieve near-optimal exploitation of TV-bands for secondary reuse without explicit coordination of co-channel interference from the secondary users deployed over a wide geographical area.
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