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Energy Efficiency and Delay Tradeoff in Device-to-Device Communications Underlaying Cellular Networks

机译:支持蜂窝网络的设备间通信中的能效和延迟权衡

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This paper investigates the problem of revealing the tradeoff between energy efficiency (EE) and delay in device-to-device (D2D) communications underlaying cellular networks. Considering both stochastic traffic arrivals and time-varying channel conditions, we formulate it as a stochastic optimization problem, which optimizes EE subject to the average power, interference-control, and network stability constraints. With the help of fractional programming and the Lyapunov optimization technique, we develop an algorithm, referred to as the TRADEOFF, to solve the problem. To deal with the nonconvex and NP-hard power allocation subproblem in the TRADEOFF, we adopt the prismatic branch and bound algorithm to find its globally optimal solution, where only a linear programming needs to be solved in each iteration. Thus, the TRADEOFF serves as an important benchmark to evaluate performance of other heuristic algorithms and is usually cost-efficient. The theoretical analysis and simulation results show that the TRADEOFF achieves an EE-delay tradeoff of with being a control parameter and can strike a flexible balance between them by simply tuning .
机译:本文研究了揭示在蜂窝网络下的设备到设备(D2D)通信中的能效(EE)和延迟之间的权衡问题。考虑到随机流量到达和时变信道条件,我们将其公式化为一个随机优化问题,该优化问题在平均功率,干扰控制和网络稳定性约束下优化了EE。借助于分数编程和Lyapunov优化技术,我们开发了一种称为TRADEOFF的算法来解决该问题。为了处理TRADEOFF中的非凸和NP硬功率分配子问题,我们采用棱柱分支定界算法来找到其全局最优解,其中每次迭代仅需要求解线性规划。因此,TRADEOFF是评估其他启发式算法性能的重要基准,通常具有成本效益。理论分析和仿真结果表明,TRADEOFF作为控制参数实现了EE延迟权衡,并且可以通过简单的调整在两者之间达到灵活的平衡。

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