Effect on Detection and False Alarm Probabilities by Reporting Channel Based Contribution (RCBC)

Mubashar Iqbal, Wahab Khan, Asim Altaf Shah, Junaid Imtiaz
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Abstract

Cognitive Radio Networks (CRNs) help in effective utilization of the spectrum of licensed user by allocating the spectrum to cognitive user (CU) when it is vacant. In a cooperative environment, individual CU senses the spectrum and report the sensed result to a centralized controller of CRN which makes a global decision regarding the spectrum. Two important performance metrics defines a CRN; probability of detection and probability of false alarm. At the centralized controller various fusion rules can be used to make global probabilities of detection and false alarm from the individual sensed result reported by CU. Practically as the number of sensed results reports at centralized controller increases, the loss probability of sensed reports also increases. This paper proposes reporting contributions for CU based on reporting channel condition. The proposed technique Reporting Channel Base Contribution (RCBC) limits the number of CU’s contributions for the final global probability of detection and false alarm based on various fusion rules. Detailed analytical and numerical analysis are covered in this paper. Simulation results show a great improvement in the global results when RCBC technique is compared with Reporting loss.
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基于信道贡献(RCBC)对检测概率和虚警概率的影响
认知无线网络(Cognitive Radio network, crn)通过在频谱空闲时将频谱分配给认知用户(Cognitive user, CU),从而有效地利用已授权用户的频谱。在协作环境中,单个CU感知频谱并将感知结果报告给CRN的集中控制器,后者对频谱做出全局决策。两个重要的性能指标定义了CRN;探测概率和虚警概率。在集中控制器上,可以使用各种融合规则从CU报告的单个感知结果中得到检测和虚警的全局概率。实际上,随着中央控制器的传感结果报告数量的增加,传感报告的丢失概率也随之增加。本文提出了基于报告通道条件的CU报告贡献。提出的报告信道基础贡献(RCBC)技术限制了基于各种融合规则的最终全局检测概率和虚警概率的CU贡献数量。本文进行了详细的分析和数值分析。仿真结果表明,与报告丢失相比,RCBC技术在全局结果上有很大改善。
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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