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Energy Efficiency of D2D Multi-User Cooperation

机译:D2D多用户合作的能源效率

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摘要

The Device-to-Device (D2D) communication system is an important part of heterogeneous networks. It has great potential to improve spectrum efficiency, throughput and energy efficiency cooperation of multiple D2D users with the advantage of direct communication. When cooperating, D2D users expend extraordinary energy to relay data to other D2D users. Hence, the remaining energy of D2D users determines the life of the system. This paper proposes a cooperation scheme for multiple D2D users who reuse the orthogonal spectrum and are interested in the same data by aiming to solve the energy problem of D2D users. Considering both energy availability and the Signal to Noise Ratio (SNR) of each D2D user, the Kuhn-Munkres algorithm is introduced in the cooperation scheme to solve relay selection problems. Thus, the cooperation issue is transformed into a maximum weighted matching (MWM) problem. In order to enhance energy efficiency without the deterioration of Quality of Service (QoS), the link outage probability is derived according to the Shannon Equation by considering the data rate and delay. The simulation studies the relationships among the number of cooperative users, the length of shared data, the number of data packets and energy efficiency.
机译:设备到设备(D2D)通信系统是异构网络的重要组成部分。利用直接通信的优势,具有提高多个D2D用户的频谱效率,吞吐量和能效合作的巨大潜力。合作时,D2D用户将花费大量精力将数据中继到其他D2D用户。因此,D2D用户的剩余能量决定了系统的寿命。为了解决D2D用户的能源问题,本文提出了一种针对多个复用正交频谱并且对相同数据感兴趣的D2D用户的协作方案。考虑到每个D2D用户的能量可用性和信噪比(SNR),在合作方案中引入了Kuhn-Munkres算法来解决中继选择问题。因此,合作问题转化为最大加权匹配(MWM)问题。为了在不降低服务质量(QoS)的情况下提高能源效率,通过考虑数据速率和延迟,根据Shannon公式得出链路中断概率。仿真研究了合作用户数量,共享数据的长度,数据包的数量和能源效率之间的关系。

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