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Subcarrier and power optimization for device-to-device underlay communication using auction games

机译:使用拍卖游戏的设备间通信的子载波和功率优化

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An auction-based joint subcarrier and power allocation approach is investigated to improve the performance of device-to-device (D2D) communication underlay cellular networks with uplink (UL) resource sharing. To maximize the system sum rate over the resource reuse of multiple D2D pairs, we introduce a reverse iterative combinatorial auction to formulate the optimization problem. In the auction, cellular channels are viewed as bidders competing to obtain rate increase while packages of D2D pairs and the corresponding transmit power are auctioned as goods in each round. We first give the evaluation of bidders' optimal value for packages, and then explain a descending price auction in detail, also give properties of convergency and low-complexity. The simulation results are finally provided to indicate the efficiency of the proposed auction-based algorithm.
机译:研究了一种基于拍卖的联合子载波和功率分配方法,以提高具有上行链路(UL)资源共享的蜂窝网络下设备对设备(D2D)通信的性能。为了在多个D2D对的资源重用上最大化系统总和率,我们引入反向迭代组合拍卖来制定优化问题。在拍卖中,蜂窝信道被视为竞标者竞相获得速率提高,而D2D对的包裹和相应的发射功率则作为每轮中的商品进行拍卖。我们首先给出投标人对包裹的最佳价值的评估,然后详细解释降价拍卖,并给出收敛性和低复杂度的属性。最后提供了仿真结果,以表明所提出的基于拍卖的算法的效率。

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