Performance of Combinational Cooperative Detection Method Under Realistic Conditions

Rameez Ahmed Samo, M. Başaran, Serhat Erküçük
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Abstract

Combinational cooperative detection (CCD) is a method where signal energies from multiple secondary users (SUs) are gathered in different combinations in order to reach a unique decision for each secondary user regarding the activity of the primary user. In earlier implementations of the CCD method, the locations of the SUs have been assumed to be fixed and selected near the border points of the communication area, and the detection performance has been studied for different parameters. In this paper, the performance of the CCD method has been studied under realistic conditions. Initially, the effect of random locations of SUs on the detection performance is considered and compared with the performance for fixed locations. Then, the effect of distance variations between the master and the user is investigated. Finally, the effect of different propagation environments on the detection performance is studied. The results presented are important to assess the performance of the CCD method under realistic conditions.
组合协同检测方法在现实条件下的性能
组合协同检测(CCD)是一种将多个辅助用户(su)的信号能量以不同的组合方式收集,从而针对主用户的活动为每个辅助用户做出唯一决策的方法。在CCD方法的早期实现中,假设单元的位置是固定的,并选择在通信区域的边界点附近,并研究了不同参数下的检测性能。本文对CCD方法在实际条件下的性能进行了研究。首先,考虑单元的随机位置对检测性能的影响,并与固定位置的性能进行比较。然后,研究了主人和用户之间距离变化的影响。最后,研究了不同传播环境对检测性能的影响。所得结果对评价CCD方法在实际条件下的性能具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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