COOPERATIVE SPECTRUM SENSING IN COGNITIVE RADIO

Jenish Dev, B. Mathumitha, M. A. Bharathi, M. Rachel, A. Anu
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Abstract

In cognitive radio (CR) networks, cooperative spectrum sensing is utilized to improve the sensing performance to avoid potential interference to primary users (PUs) and increase spectrum access opportunities for secondary users (SUs). The problem of how to collect sensing data should be solved for the implementation of the cooperative sensing. A cooperative spectrum sensing process is divided into three phases: individual sensing/detection, reporting/fusion, and data transmission. In the reporting phase, one or more reporting channels are needed to transmit individual sensing results to a fusion center (FC), and global spectrum sensing results are determined at the FC. The number of required reporting channels depends on the number of spectrum sensors or SUs, which relates to reporting channel efficiency and channel scheduling complexity. In the proposed scheme, random access is used to collect the spectrum sensing data of the secondary users during collection period and the length of the collection period is determined adaptively based on the sensing data collected so far. Thus, complex slot management for the collection of the sensing data is not necessary. Also we design a reporting channel scheme based on random access protocols, including slotted Aloha and reservation-Aloha. Performance evaluations in terms of PU detection probabilities and false alarm probabilities considering the proposed reporting channels are presented.
认知无线电中的协同频谱感知
在认知无线电(CR)网络中,利用协同频谱感知来提高感知性能,避免对主用户(pu)的潜在干扰,增加辅助用户(su)的频谱访问机会。实现协同感知需要解决如何采集感知数据的问题。一个协同频谱感知过程分为三个阶段:个体感知/检测、报告/融合和数据传输。在报告阶段,需要一个或多个报告通道将单个频谱感知结果传输到融合中心(FC),并在融合中心确定全局频谱感知结果。所需的报告信道数量取决于频谱传感器或单元的数量,这关系到报告信道的效率和信道调度的复杂性。在该方案中,采用随机接入的方式在采集周期内采集二级用户的频谱感知数据,并根据迄今采集到的感知数据自适应确定采集周期的长度。因此,没有必要对传感数据的收集进行复杂的槽管理。设计了一种基于随机访问协议的报告通道方案,包括槽Aloha和保留Aloha。给出了考虑所提出的报告通道的PU检测概率和虚警概率的性能评估。
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