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Joint Iterative Channel Allocation and Beamforming Algorithm for Interference Avoidance in Multiple-Antenna Ad Hoc Networks

机译:多天线临时网络中干扰避免的联合迭代信道分配和波束形成算法

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In this paper, we consider the problem of interference suppression by performing a joint iterative beamforming [1] and channel allocation (JIBCA) strategy for wireless nodes under contracted quality-of-service (QoS) constraints in an ad hoc network. The objective is to maximize the signal to interference plus noise ratios (SINRs) between two communicating nodes under constant transmit power considering the interference from other nodes in the network. For this purpose, the interference impaired network is modeled as a noncooperative joint beamforming and channel allocation game, in which the payoff includes the maximization of the target SINR and the limiting factor is related to the interference caused by other nodes. The proposed JIBCA algorithm is shown to give better SINR efficiency both with the assumptions of perfect and imperfect channel information availability at the transmit/receive units over the network. It is also shown through simulation results that the JIBCA algorithm converges to Nash equilibriums (NE) and results in SINR efficiency improvement.
机译:在本文中,我们考虑通过在临时网络中执行联合迭代波束成形[1]和信道分配(Jibca)策略来考虑干扰抑制问题,用于在临时网络中的合同服务质量(QoS)约束下的无线节点。目的是考虑到来自网络中的其他节点的干扰,在恒定发射功率下的两个通信节点之间将信号最大化到干扰加噪声比(SINR)。为此目的,干扰障碍网络被建模为非兴奋的关节波束形成和信道分配游戏,其中收益包括目标SINR的最大化,并且限制因子与由其他节点引起的干扰有关。所提出的JIBCA算法显示在网络上通过网络上的发送/接收单元的完美和不完美信道信息可用性的假设提供更好的SINR效率。通过仿真结果还通过模拟结果显示,Jibca算法会聚到纳什均衡(NE)并导致SINR效率改进。

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