功率和干扰约束下两层SIMO上行链路的近最优功率控制

Baris Yuksekkaya, Hazer Inaltekin, C. Toker, H. Yanikomeroglu
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引用次数: 1

摘要

研究了两层单输入多输出上行网络中发射功率分配的优化问题。所提出的系统模型具有足够的通用性,可以涵盖新兴的异构网络(HetNet)架构和认知无线电(CR)网络。第一层(假设有一个用户)表示宏蜂窝(或主用户网络),第二层表示HetNet(或CR网络)中的飞蜂窝(或辅助用户网络)。第二层用户与第一层用户共享相同的资源,它们形成通往其预期基站的单输入多输出多址信道,同时对第一层用户造成干扰。通过考虑低复杂度的信号解码器,在不消除第二层基站的干扰的情况下,在单个发射功率约束和对第一层用户的总干扰功率约束下,获得了使总通信速率最大化的近最优发射功率分配。结果表明,该算法是经典注水算法的改进版。
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Near-optimum power control for two-tier SIMO uplink under power and interference constraints
This paper considers optimization of transmit power allocation in a two-tier single input multiple output uplink network. The proposed system model is general enough to cover both emerging heterogeneous network (HetNet) architectures and cognitive radio (CR) networks. The first tier, which is assumed to have one user, represents a macrocell (or a primary user network) and the second tier represents a femtocell (or a secondary user network) in a HetNet (or a CR network). Second tier users share the same resources with the first tier user and they form a single input multiple output multiple access channel to their intended base station while causing interference to the first tier user. Near-optimum allocation of transmission powers maximizing the aggregate communication rate under individual transmission power constraints and a constraint on the total interference power at the first tier user is obtained by considering low-complexity signal decoders without interference cancelation at the second tier base station. It is shown that the power allocation is a modified version of the classical water-filling algorithm.
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