
教授 博士生导师 硕士生导师
性别:男
毕业院校:北京航空航天大学
学位:博士
所在单位:信息与通信工程学院
学科:通信与信息系统
信号与信息处理
电路与系统
办公地点:创新园大厦A520
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发布时间:2019-03-11
论文类型:会议论文
发表时间:2015-06-08
收录刊物:Scopus、CPCI-S、EI
页面范围:393-398
关键字:Multi-channel hidden terminals; Interference; Control channel; Cognitive-MAC; power control
摘要:Interference due to multi-channel CR hidden terminals and edge PU receivers at link level has direct impact on performance of CR-MAC protocol. State-of-the-art research in CR-MAC propose sequential, cluster-CCC coverage for In-band and global CCC coverage for out-of-band spectrum to avoid primary (PU) and secondary (CR) hidden terminals. But, imperfect node synchronization due to per hop and group CCC coverage with In-band CR-MAC cannot resolve hidden terminal problem effectively. On the other hand, even though global CCC coverage with out-of-band CR-MAC provides tight node synchronization to avoid hidden terminals, it is susceptible to intruder attacks and channel saturation. To overcome this, we propose an Interference aware hybrid CCC based CR-MAC protocol with adaptive power control algorithm to avoid both PU and CR multi-channel hidden terminals through tight node synchronization and reduced cognitive control overhead. Experimental results reveal that proposed CR-MAC protocol has increased link throughput and reduced control overhead when compared with existing In-band and out-of-band CCC based CR-MAC protocols.