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引用次数: 34
摘要
为了解决当前无线局域网中由于频谱拥挤导致的性能下降问题,我们提出了一种认知无线电(CR)媒体接入协议C-CSMA/CA。基本思想是,使用认知无线电技术,WLAN设备不仅可以访问遗留的WLAN未许可频谱,还可以在没有许可证的情况下访问任何其他未充分利用的许可频谱。C-CSMA/CA的应用场景是基础设施BSS (Basic Service Set) WLAN。C-CSMA/CA有效利用CSMA/CA的固有特性,设计分布式协同带外感知,探索频谱空洞;此外,设计了双带内检测方案来检测主用户的外观。此外,C-CSMA/CA具有有效解决重叠CR bss场景下认知无线电自共存问题的优势。实现了基于站点的动态资源选择和利用。它与任何遗留的WLAN (BSS)系统兼容。利用OPNET开发并实现了C-CSMA/CA的仿真。仿真结果表明,C-CSMA/CA可以有效地提高吞吐量,降低队列延迟和媒体访问延迟。
To solve the performance degradation issue in current WLAN caused by the crowded unlicensed spectrum, we propose a cognitive radio (CR) media access protocol, C-CSMA/CA. The basic idea is that with cognitive radio techniques the WLAN devices can not only access the legacy WLAN unlicensed spectrum but opportunistically access any other under-utilized licensed spectrum without a license. The application scenario of C-CSMA/CA is infrastructure BSS (Basic Service Set) WLAN. C-CSMA/CA efficiently exploits the inherent characteristics of CSMA/CA to design distributed cooperative outband sensing to explore spectrum hole; moreover, it designs dual inband sensing scheme to detect primary user appearance. Additionally, C-CSMA/CA has the advantage to effectively solve the cognitive radio self-coexistence issues in the overlapping CR BSSs scenario. It also realizes station-based dynamic resource selection and utilization. It is compatible with any legacy WLAN (BSS) system. We develop and implement the simulation of C-CSMA/CA by OPNET. The simulation results show that C-CSMA/CA highly enhances throughput and reduces the queuing delay and media access delay.