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A Game Theoretical Resource Allocation for Relay-Assisted Device-to-Device Communication Networks

机译:用于中继辅助设备到设备通信网络的游戏理论资源分配

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Device-to-Device (D2D) communications in LTE-Advanced networks allow user equipments (UEs) to communicate directly with each other without using uplink and downlink resources via base stations of the cellular networks. This results in a major improvement in term of spectrum utilization and enabling high transmission rates for D2D pairs. However, multiple D2D pairs communicate using the same channels can cause the interference problem for both the cellular devices and D2D pairs. Consequently, D2D pairs must properly control their transmission power. With the limited transmission power and interference problem, D2D pairs can only communicate within a limited area. To increase the communication range between D2D pairs, we focus on relay-assisted D2D communications networks. Particularly, a D2D pair including one transmitter and one receiver can transmit data via a relay device. In this paper, we propose a bargaining game approach for resource allocation (i.e., transmission power) in the relay-assisted D2D communication networks. The objective of each D2D pair is to bargain with each other in order to ensure proportional fairness and maximize the overall utility while satisfying the interference constraints. The performance of the proposed scheme is evaluated through simulations.
机译:LTE-Advanced Networks中的设备到设备(D2D)通信允许用户设备(UE)彼此直接通信,而不使用蜂窝网络的基站的上行链路和下行链路资源。这导致频谱利用期限的重大改进,并为D2D对实现高传输速率。然而,使用相同信道通信的多个D2D对可以导致蜂窝设备和D2D对的干扰问题。因此,D2D对必须正确控制其传输功率。通过有限的传输功率和干扰问题,D2D对只能在有限区域内进行通信。为了增加D2D对之间的通信范围,我们专注于中继辅助D2D通信网络。特别地,包括一个发射机和一个接收器的D2D对可以经由中继设备传输数据。在本文中,我们提出了一种讨价还价的游戏方法,用于中继辅助D2D通信网络中的资源分配(即传输功率)。每个D2D对的目的是彼此讨价还价,以确保比例公平性并最大化整体实用程序,同时满足干扰约束。通过模拟评估所提出的方案的性能。

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