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Uplink Soft Frequency Reuse for Self-Coexistence of Cognitive Radio Networks

机译:上行链路软频率复用,实现认知无线电网络的自存

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The depletion of usable radio frequency spectrum has stimulated increasing interest in dynamic spectrum access technologies, such as cognitive radio (CR). In a scenario where multiple co-located CR networks operate in the same swath of white-space (or unlicensed) spectrum with little or no direct coordination, co-channel self-coexistence is a challenging problem. In this paper, we focus on the problem of spectrum sharing among coexisting CR networks that employ orthogonal frequency division multiple access (OFDMA) in their uplink and do not rely on inter-network coordination. An uplink soft frequency reuse (USFR) technique is proposed to enable globally power-efficient and locally fair spectrum sharing. We frame the self-coexistence problem as a non-cooperative game. In each network cell, uplink resource allocation (URA) problem is decoupled into two subproblems: subchannel allocation (SCA) and transmit power control (TPC). We provide a unique optimal solution to the TPC subproblem, while presenting a low-complexity heuristic for the SCA subproblem. After integrating the SCA and TPC games as the URA game, we design a heuristic algorithm that achieves the Nash equilibrium in a distributed manner. In both multi-operator and single-operator coexistence scenarios, our simulation results show that USFR significantly improves self-coexistence in spectrum utilization, power consumption, and intra-cell fairness.
机译:可用无线电频谱的枯竭激发了人们对动态频谱接入技术(例如认知无线电(CR))的兴趣。在多个同位CR网络在空白空间(或未经许可)频谱的同一条带中运行而几乎没有或没有直接协调的情况下,共信道自共存是一个具有挑战性的问题。在本文中,我们关注于共存的CR网络之间的频谱共享问题,这些CR网络的上行链路采用正交频分多址(OFDMA),并且不依赖于网络间的协调。提出了一种上行链路软频率重用(USFR)技术,以实现全局节能和局部公平的频谱共享。我们将自我共存问题定性为非合作博弈。在每个网络小区中,上行链路资源分配(URA)问题被分解为两个子问题:子信道分配(SCA)和发射功率控制(TPC)。我们为TPC子问题提供了独特的最佳解决方案,同时为SCA子问题提供了一种低复杂度的启发式方法。将SCA和TPC游戏整合为URA游戏之后,我们设计了一种启发式算法,该算法以分布式方式实现Nash平衡。在多运营商和单运营商共存的情况下,我们的仿真结果表明,USFR可以显着改善频谱利用率,功耗和小区内公平性的自我共存。

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