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Throughput maximization of multichannel allocation mechanism under interference constraint for hybrid overlay/underlay cognitive radio networks with energy harvesting

机译:混合覆盖/底层认知无线网络干扰约束下多通道分配机制的吞吐量最大化,能量收集

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By harvesting energy from ambient radio frequency (RF) signals, significant progress has been achieved in wireless networks self-maintaining their life cycles. Motivated by this and improved spectrum reuse by combined use of overlay/underlay modes of cognitive radio networks (CRNs), this paper proposes a novel multi-channel (m-channel) allocation performance maximization algorithm for low-power mobiles. CRNs, called secondary transmitters (STs), can harvest energy from RF signals by nearby active primary transmitters (PTs). In the proposed scheme, PTs and STs are distributed as independent homogeneous Poisson point processes and contact their receivers at fixed distances. Each PT contains a guard zone to protect its intended receiver from ST interference, and provides RF energy to STs located in its harvesting zone. Prioritization of STs during opportunistic allocation of channels is critical as properties like energy level and harvesting capability improve channel distribution performance. A novel metric is proposed that prioritizes STs based on initial energy levels, harvesting capability, and number of channels through which they can transmit. For comparison, three algorithms were considered: a greedy mechanism for m-channel allocation of hybrid CRNs without harvesting, the proposed m-channel allocation schemes based on maximum independent sets (MIS), and the proposed metric of hybrid CRNs with harvesting capability. The simulations show that the proposed m-channel allocation method based on MIS outperforms the greedy algorithm. The proposed m-channel allocation using the proposed metric on hybrid CRNs with energy harvesting ability produced the best performance of the three methods, proving the superiority of the proposed algorithm.
机译:通过从环境射频(RF)信号中收获能量,在无线网络中实现了重大进展,自我维护其生命周期。通过组合使用覆盖/衬垫模式的认知无线电网络(CRNS)的覆盖/底层模式来激励和改进的频谱再利用,本文提出了一种用于低功率手机的新型多通道(M频道)分配性能最大化算法。 CRNS,称为二次发射器(STS),可以通过附近的主机初级发射器(PTS)从RF信号收获能量。在所提出的方案中,PTS和STS分配为独立的均匀泊松点过程,并在固定距离处接触其接收器。每个PT都包含一个保护区,以保护其预期接收器免受ST干扰,并为位于其收集区域的STS提供RF能量。在机会主义渠道的机会分配过程中STS的优先级是作为能量水平和收集能力等特性的关键,提高信道分布性能。提出了一种新的度量,以基于初始能级,收获能力和可以传输的通道数优先考虑STS。为了比较,考虑了三种算法:基于最大独立集(MIS)的所提出的M信道分配方案,以及具有收获能力的提出的混合CRN的所提出的M沟道分配方案,对混合CRN的M信道分配的贪婪机制。模拟表明,基于MIS的建议的M沟道分配方法优于贪婪算法。所提出的M沟道分配使用具有能量收集能力的混合CRN的提出的度量,产生了三种方法的最佳性能,证明了所提出的算法的优越性。

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