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Energy-Efficient Device-to-Device Privacy Content Transmission in Uplink Relay Networks

机译:上行链路中继网络中的节能设备到设备隐私内容传输

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摘要

The collaborative transmission of device-to-device (D2D) devices with the wireless networks enables the spectrum- efficient communication, which yet causes the interference of the wireless networks to D2D devices. It is fatal to the transmission of privacy content. To tackle the issue, we establish a collaborative D2D and uplink relay transmission model, in which D2D receiver eliminates the interference of the networks under the assist of the relay. Particularly, the relay and D2D receiver of the model can capture energy from the signals they received to relay the signals and facilitate the future D2D transmission, respectively. In order to guarantee the efficiency of D2D transmission, a novel energy- efficient D2D privacy content transmission protocol is proposed. In the protocol, a D2D transmission rate maximization problem is formulated subjected to several key rate and energy efficiency constraints. By solving the problem, the exact analytic solutions with respect to energy allocation parameters are acquired. Furthermore, the outage probabilities of the relay network and D2D transmission are characterized to verify the performance of the protocol. Finally, numerical results are provided to validate the analytical results of the protocol.
机译:具有无线网络的设备到设备(D2D)设备的协作传输使得能够频谱有效的通信,其却导致无线网络对D2D设备的干扰。对隐私内容的传输是致命的。为了解决问题,我们建立协作D2D和上行链路中继传输模型,其中D2D接收器消除了在继电器的辅助下网络的干扰。特别地,模型的继电器和D2D接收器可以从收到的信号中捕获能量以中继信号并促进未来的D2D传输。为了保证D2D传输的效率,提出了一种新型节能D2D隐私内容传输协议。在该协议中,将D2D传输速率最大化问题进行了经受若干密钥率和能效约束的制定。通过解决问题,获取关于能量分配参数的精确分析解决方案。此外,中继网络和D2D传输的停电概率特征在于验证协议的性能。最后,提供了数值结果以验证协议的分析结果。

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