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Throughput Analysis for Full-Duplex Wireless Networks With Imperfect Self-Interference Cancellation

机译:具有不完善的自干扰消除功能的全双工无线网络的吞吐量分析

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This paper investigates the throughput for wireless network with full-duplex radios using stochastic geometry. Full-duplex (FD) radios can exchange data simultaneously with each other. On the other hand, the downside of FD transmission is that it will inevitably cause extra interference to the network compared to half-duplex (HD) transmission. Moreover, the residual self-interference has negative effects on the network throughput. In this paper, we focus on a wireless network of nodes with both HD and FD capabilities and derive and optimize the throughput in such a network. Our analytical result shows that if the network is adopting an ALOHA protocol, the maximal throughput is achieved by scheduling all concurrently transmitting nodes to work in either FD mode or HD mode depending on one simple condition. Moreover, the effects of imperfect self-interference cancellation on the signal-to-interference ratio (SIR) loss and throughput are also analyzed based on our mathematical model. We rigorously quantify the impact of imperfect self-interference cancellation on the throughput gain, transmission range, and other metrics, and we establish the minimum amount of self-interference suppression needed for FD to be beneficial.
机译:本文研究了使用随机几何的全双工无线网络的吞吐量。全双工(FD)无线电可以彼此同时交换数据。另一方面,FD传输的缺点是与半双工(HD)传输相比,它不可避免地会对网络造成额外的干扰。此外,残留的自干扰对网络吞吐量具有负面影响。在本文中,我们专注于具有HD和FD功能的节点的无线网络,并推导并优化这种网络中的吞吐量。我们的分析结果表明,如果网络采用ALOHA协议,则根据一个简单条件,通过调度所有并发传输的节点以FD模式或HD模式工作,可以实现最大吞吐量。此外,还基于我们的数学模型分析了不完善的自干扰消除对信噪比(SIR)损耗和吞吐量的影响。我们严格量化不完善的自干扰消除对吞吐量增益,传输范围和其他指标的影响,并确定使FD受益所需的最小自干扰抑制量。

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