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Channel Access and Power Control for Mobile Crowdsourcing in Device-to-Device Underlaid Cellular Networks

机译:设备到设备嵌入式蜂窝网络中的移动众包的信道访问和功率控制

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With the access of a myriad of smart handheld devices in cellular networks, mobile crowdsourcing becomes increasingly popular, which can leverage omnipresent mobile devices to promote the complicated crowdsourcing tasks. Device-to-device (D2D) communication is highly desired in mobile crowdsourcing when cellular communications are costly. The D2D cellular network is more preferable for mobile crowdsourcing than conventional cellular network. Therefore, this paper addresses the channel access and power control problem in the D2D underlaid cellular networks. We propose a novel semidistributed network-assisted power and a channel access control scheme for D2D user equipment (DUE) pieces. It can control the interference from DUE pieces to the cellular user accurately and has low information feedback overhead. For the proposed scheme, the stochastic geometry tool is employed and analytic expressions are derived for the coverage probabilities of both the cellular link and D2D links. We analyze the impact of key system parameters on the proposed scheme. The Pareto optimal access threshold maximizing the total area spectral efficiency is obtained. Unlike the existing works, the performances of the cellular link and D2D links are both considered. Simulation results show that the proposed method can improve the total area spectral efficiency significantly compared to existing schemes.
机译:随着蜂窝网络中无数智能手持设备的访问,移动众包变得越来越流行,它可以利用无所不在的移动设备来促进复杂的众包任务。当蜂窝通信成本很高时,在移动众包中非常需要设备到设备(D2D)通信。对于移动众包而言,D2D蜂窝网络比常规蜂窝网络更可取。因此,本文解决了D2D底层蜂窝网络中的信道访问和功率控制问题。我们提出了一种新颖的半分布式网络辅助电源和D2D用户设备(DUE)件的信道访问控制方案。它可以精确地控制从DUE件到蜂窝用户的干扰,并且信息反馈开销低。对于所提出的方案,采用随机几何工具,并为蜂窝链路和D2D链路的覆盖概率导出解析表达式。我们分析了关键系统参数对建议方案的影响。获得最大化总区域频谱效率的帕累托最优访问阈值。与现有作品不同,蜂窝链路和D2D链路的性能都需要考虑。仿真结果表明,与现有方案相比,该方法可以显着提高总面积谱效率。

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