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Cooperative AF Relaying in Spectrum-Sharing Systems: Outage Probability Analysis under Co-Channel Interferences and Relay Selection

机译:频谱共享系统中的协作式AF中继:同频干扰和中继选择下的中断概率分析

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摘要

For cooperative amplify-and-forward (AF) relaying in spectrum-sharing wireless systems, secondary users share spectrum resources originally licensed to primary users to communicate with each other and, thus, the transmit power of secondary transmitters is strictly limited by the tolerable interference powers at primary receivers. Furthermore, the received signals at a relay and at a secondary receiver are inevitably interfered by the signals from primary transmitters. These co-channel interferences (CCIs) from concurrent primary transmission can significantly degrade the performance of secondary transmission. This paper studies the effect of CCIs on outage probability of the secondary link in a spectrum-sharing environment. In particular, in order to compensate the performance loss due to CCIs, the transmit powers of a secondary transmitter and its relaying node are respectively optimized with respect to both the tolerable interference powers at the primary receivers and the CCIs from the primary transmitters. Moreover, when multiple relays are available, the technique of opportunistic relay selection is exploited to further improve system performance with low implementation complexity. By analyzing lower and upper bounds on the outage probability of the secondary system, this study reveals that it is the tolerable interference powers at primary receivers that dominate the system performance, rather than the CCIs from primary transmitters. System designers will benefit from this result in planning and designing next-generation broadband spectrum-sharing systems.
机译:对于频谱共享无线系统中的协作放大转发(AF)中继,次要用户共享最初许可给主要用户进行相互通信的频谱资源,因此,次要发射机的发射功率受到可忍受的干扰的严格限制。主接收器的电源。此外,在中继站和辅助接收机处接收的信号不可避免地受到来自主发射机的信号的干扰。来自并发主要传输的这些同信道干扰(CCI)会显着降低辅助传输的性能。本文研究了频谱共享环境中CCI对次级链路中断概率的影响。特别地,为了补偿由于CCI引起的性能损失,分别相对于主要接收器处的可容忍干扰功率和来自主要发射器的CCI来分别优化次要发送器及其中继节点的发送功率。此外,当多个继电器可用时,利用机会继电器选择技术以较低的实现复杂度进一步改善系统性能。通过分析辅助系统中断概率的上限和下限,这项研究表明,主接收器的可容忍干扰功率决定了系统性能,而不是主发送器的CCI。在设计和设计下一代宽带频谱共享系统时,系统设计人员将从此结果中受益。

著录项

  • 作者

    Xia Minghua; Aissa Sonia;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-20 20:25:11

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