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Cellular Offloading in Heterogeneous Mobile Networks With D2D Communication Assistance

机译:具有D2D通信协助的异构移动网络中的蜂窝卸载

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摘要

The next-generation mobile communication system [fifth-generation (5G)] needs to address the challenges stemming from the performance requirements in diverse technical scenarios, such as seamless wide-area coverage, high-capacity hot-spots, and low-power massive connections. It is widely recognized that traditional single-tier cellular network architecture is not adequate to meet these requirements, and thus, the heterogeneous cellular network (HetNet) has been identified as a promising network architecture for 5G. In HetNets, traffic offloading can be exploited to effectively improve network capacity by utilizing complementary network communication techniques. In this paper, we propose a device-to-device (D2D) communication assisted mobile traffic offloading (DATO) scheme, with focus on massive connections for machine type communications (MTC). DATO determines access mode for user equipments (UEs) to offload UEs from macro base stations (MBSs) to small base stations via D2D communications to improve the overall network capacity and mitigate the traffic congestion at MBSs. We formulate the DATO problem as a 0–1 linear programing and prove it to be NP-hard. We resort to dynamic programing to provide the optimal solution, as well as the theoretical performance upper bound of DATO. We develop an efficient algorithm to solve the DATO problem while preserving the optimality by making use of the location relationship of BSs and UEs. We apply our proposed DATO scheme to a series of typical network scenarios to validate its effectiveness. Numerical results reveal that DATO significantly outperforms traditional UE access mode in terms of network capacity and UE energy consumption, which are important to massive MTC.
机译:下一代移动通信系统[第五代(5G)]需要解决各种技术场景中对性能的要求所带来的挑战,例如无缝的广域覆盖,大容量热点和低功耗大规模连接。众所周知,传统的单层蜂窝网络架构不足以满足这些要求,因此,异构蜂窝网络(HetNet)已被确定为5G的有前途的网络架构。在HetNets中,可以通过利用互补的网络通信技术来利用流量卸载来有效地提高网络容量。在本文中,我们提出了一种设备到设备(D2D)通信辅助的移动流量卸载(DATO)方案,重点是用于机器类型通信(MTC)的大规模连接。 DATO确定用户设备(UE)的访问模式,以通过D2D通信将UE从宏基站(MBS)卸载到小型基站,以改善整体网络容量并减轻MBS的流量拥塞。我们将DATO问题公式化为0–1线性规划,并证明它是NP难的。我们借助动态编程来提供最佳解决方案以及DATO的理论性能上限。我们开发了一种有效的算法来解决DATO问题,同时通过利用BS和UE的位置关系来保留最优性。我们将提出的DATO方案应用于一系列典型的网络方案,以验证其有效性。数值结果表明,DATO在网络容量和UE能耗方面明显优于传统的UE接入模式,这对于大规模MTC至关重要。

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