Delaunay Triangulation Based Cognitive Information Compression for Cognitive Radio Networks

Chenyang Han, Zhiqing Wei, Z. Feng, Wei Li
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Abstract

Geo-location database is an efficient way to delivery the spectrum occupancy information, which is defined as "cognitive information", to unlicensed users in cognitive radio networks (CRNs). In this paper, we study the compression of cognitive information in geo-location database supported CRNs. We propose a delaunay triangulation based triangle mesh division algorithm. It is proved that the RPE of triangle meshes is smaller than that of rectangle meshes when the number of meshes are the same. Then the triangle meshes are clustered to reduce the redundancy of cognitive information. Finally, the boundaries of the clusters are extracted, which form polygons and the cognitive information is further compressed. The numerical results are provided to verify the correctness of the theoretical analysis and the efficiency of the cognitive information compression algorithms.
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基于Delaunay三角剖分的认知无线网络认知信息压缩
地理位置数据库是向认知无线网络(crn)中的非授权用户传递频谱占用信息的一种有效方式,而频谱占用信息被定义为“认知信息”。本文研究了基于crn的地理位置数据库中认知信息的压缩问题。提出了一种基于delaunay三角剖分的三角网格划分算法。证明了当网格数相同时,三角形网格的RPE小于矩形网格的RPE。然后对三角网格进行聚类,减少认知信息的冗余。最后,提取聚类的边界,形成多边形,进一步压缩认知信息。数值结果验证了理论分析的正确性和认知信息压缩算法的有效性。
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