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Power allocation and relay selection for network-coded D2D communication underlay heterogeneous cellular networks

机译:网络编码D2D通信底层异构蜂窝网络的功率分配和继电器选择

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摘要

Underlay device-to-device (D2D) communication is an attractive technology enabling nearby cellular users to communicate with each other directly in order to increase data rate and spectral efficiency. The current cellular heterogeneous networks consist of macrocell base stations and small cell base stations with different transmit powers and coverage areas. Femtocell is the most popular small cell which is expected to be utilized in dense and ultra-dense scenarios in the future. Network coding in relay-assisted multi-hop communications improves achievable transmission rate and coverage of D2D communications. In this paper, two-hop random linear network coding network in cooperative D2D communication (RLNC-CDC) is considered. We propose to use femtocell base station (FBS) as a relay. We assume that the D2D pair and relay operate in the frequency band which is allocated to femtocell network. Therefore, there would be interference from the relay node and the D2D communication on the femtocell network users. To reduce the interference, the sum of transmit powers of the D2D pair and selected relay FBS should be minimized in a way that the highest transmission rate for the D2D pair is achieved. The constraints on the bounds of transmit powers of the D2D and relay node as well as the minimum required transmission rate for D2D communication are considered and the optimum solution is obtained. Simulation results indicate that the proposed RLNC-CDC achieves higher data rate and smaller outage probability than the direct D2D transmission.
机译:底层设备到设备(D2D)通信是一个有吸引力的技术,使附近的蜂窝用户能够直接与彼此通信,以提高数据速率和光谱效率。当前蜂窝异构网络由宏小区基站和具有不同发射功率和覆盖区域的小小区基站组成。 Femtocell是最受欢迎的小电池,预计将来将在未来密集和超密集的情景中使用。中继辅助多跳通信中的网络编码可提高可实现的传输速率和D2D通信的覆盖范围。在本文中,考虑了协同D2D通信(RLNC-CDC)中的两跳随机线性网络编码网络。我们建议使用Femtocell基站(FBS)作为继电器。我们假设D2D对和继电器在分配给毫微微小区网络的频带中操作。因此,将有来自中继节点的干扰和毫微微小区网络用户上的D2D通信。为了降低干扰,应以达到D2D对的最高传输速率的方式最小化D2D对和所选继电器FB的发射功率和。考虑了D2D和中继节点的发射功率范围的约束以及D2D通信的最小所需传输速率,并且获得了最佳解决方案。仿真结果表明,所提出的RLNC-CDC比直接D2D传输实现更高的数据速率和更小的中断概率。

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