Efficient Resource Allocation for D2D Communication Underlaying Cellular Networks: A Multi-Round Combinatorial Double Auction

Jianbin Xue, Qingliu Ma, Hua Shao
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Abstract

Device-to-Device (D2D) communication brings significant benefits to spectrum utilization, increasing throughput of the system and extending the coverage of cellular networks, it also causes interference to the cellular networks as a result of spectrum sharing. In this paper, energy efficiency is considered as the optimization objective since the devices are handheld equipment with limited battery life. Power control for D2D user transmitting terminal is presented to reduce system power consumption and match the appropriate resource packages. To optimize the energy efficiency over the resource allocation, we formulate the allocation problem as a multi-round combinatorial double auction (MCDA) algorithm. The simulation results demonstrate that the algorithm enhances the system energy efficiency and ensures the fairness of resource allocation.
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基于蜂窝网络的D2D通信有效资源分配:多轮组合双拍卖
设备对设备(Device-to-Device, D2D)通信在频谱利用、提高系统吞吐量和扩大蜂窝网络覆盖范围等方面具有显著的优势,但由于频谱共享,也会对蜂窝网络造成干扰。由于设备是手持设备,电池寿命有限,因此本文将能效作为优化目标。提出了D2D用户发射终端的功率控制,以降低系统功耗并匹配合适的资源包。为了在资源分配上优化能源效率,我们将分配问题表述为一个多轮组合双拍卖(MCDA)算法。仿真结果表明,该算法提高了系统的能源效率,保证了资源分配的公平性。
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