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Interference-Aware Radio Resource Allocation in OFDMA-Based Cognitive Radio Networks

机译:基于OFDMA的认知无线电网络中的干扰感知无线电资源分配

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This paper considers the problem of radio resource allocation in an orthogonal frequency-division multiple access based cognitive radio (CR) network that opportunistically operates within the licensed primary users (PUs) spectrum. The resource allocation algorithm aims at maximizing the CR network throughput under PUs interference constraints. The CR interference introduced into PUs subbands is modeled as a composite that consists of the following two parts: 1) CR out-of-band emissions and 2) the interference that arises as a result of imperfect spectrum sensing. We consider both downlink and uplink subcarrier and power allocation. In both cases, the resource allocation problem is a mixed-integer nonlinear programming problem, for which obtaining the optimal solution is known to be ${cal N}{cal P}$-hard. Computationally efficient suboptimal algorithms are proposed for the downlink resource allocation problem, and then, they are extended to the uplink case. We show through simulation that the proposed algorithms exhibit near-optimal performance and significantly reduce the computational complexity compared to obtaining the optimal solution.
机译:本文考虑了基于正交频分多址的认知无线电(CR)网络中的无线电资源分配问题,该网络在许可的主要用户(PU)频谱内机会性地工作。资源分配算法旨在在PU干扰约束下最大化CR网络的吞吐量。引入PU子带的CR干扰被建模为包含以下两个部分的组合:1)CR带外发射,以及2)由于频谱检测不完善而产生的干扰。我们考虑下行链路和上行链路子载波以及功率分配。在这两种情况下,资源分配问题都是一个混合整数非线性规划问题,对于该问题,获得最优解的难度为$ {cal N} {cal P} $-hard。针对下行资源分配问题,提出了计算有效的次优算法,然后将其扩展到上行情况。通过仿真显示,与获得最佳解决方案相比,所提出的算法表现出近乎最佳的性能,并显着降低了计算复杂度。

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