系统工程与电子技术

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一种空时二维联合频谱感知区域划分方案

阮丽华, 李勇, 程伟   

  1. 西北工业大学电子信息学院, 陕西 西安 710072
  • 出版日期:2016-04-25 发布日期:2010-01-03

Novel region division approach for joint space-time spectrum 2-dimensions sensing in cognitive radio

RUAN Li-hua, LI Yong, CHENG Wei   

  1. School of Electronics and Information, Northwestern Polytechnical University, Xi’an 710072, China
  • Online:2016-04-25 Published:2010-01-03

摘要:

认知无线电空时二维联合频谱感知技术可以有效利用认知无线电网络的二维频谱资源,该文提出一种空时异构认知网络区域划分方案的设计方法。新的设计方法依据IEEE 802.22标准和应用需求,建立了一种鲁棒性空时二维感知模型,并明确定义了认知无线电网络构架的主用户分布边界、保护边界和感知边界;基于认知用户对主用户通信中断概率的条件约束,严格推导出了3种边界条件的数学闭式解。采用新的设计方案,在保证主用户通信功率和认知用户最大允许通信功率的条件下,能够灵活确定主用户分区和认知用户的Overlay及Underlay接入模式。理论分析和仿真结果表明,新的区域划分方案在保证主用户良好通信质量的前提下,能够实现认知用户在空间维度更有效的分配和接入可用频谱资源。

Abstract:

Joint space-time sensing can effectively explore spectrum resources from 2-dimensions in cognitive radio networks. A novel region division approach is proposed to clarify the structure of the heterogeneous cognitive radio network. According to the application requirements of the IEEE 802.22 standard, the new approach establishes a space-time robust sensing model. Primary user (PU) distribution region, protection region and secondary user (SU) sensing region are clearly defined. By restricting the outage probability of the primary user, closedform bounds of three regions are obtained. Based on the transmission power of the PU and the maximum transmission power of the SU, the proposed approach can flexibly determine user distribution regions and the Overlay and Underlay access modes of the SU. Numerical and simulation results verify that the proposed approach can guarantee the communication quality of the PU, and exhibit more flexibility and efficiency in spatial spectrum resources allocation and access.