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In-Band Full-Duplex System Throughput Analysis for Wi-Fi Outdoor Network

机译:Wi-Fi室外网络的带内全双工系统吞吐量分析

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In-band full-duplex (IFD) system has been considered as an attractive solution for increasing the spectral efficiency of wireless networks. Compared to the conventional half-duplex (HD) node, an IFD node suffers not only selfinterference (SI) from its own transmitted signal, but also more severe co-channel interference (CCI), which affect the system performance significantly. To investigate the performance gain of IFD system with both interferences over the conventional HD system, this paper considers two different IFD systems, pairwise IFD (P-IFD) and 3 node form IFD (3n-IFD) under IEEE 802.11ax outdoor large BSS scenario. Also, this paper adopts an intuitive space scheduling (SSC) algorithm to reduce additional CCI of IFD nodes. Numerical results reveal that the self-interference cancellation (SIC) requirement can be reduced with help of the SSC and the implementation burden of IFD devices can be loosened. In addition, numerical results show that the performance of 3n-IFD is similar to that of P-IFD. 3n-IFD has backward compatibility with conventional HD station as well as sufficient performance gain of IFD mode.
机译:带内全双工(IFD)系统已被视为提高无线网络频谱效率的有吸引力的解决方案。与传统的半双工(HD)节点相比,IFD节点不仅遭受其自身发送信号的自干扰(SI),而且遭受更严重的同信道干扰(CCI),这严重影响了系统性能。为了研究在传统的HD系统上有两种干扰的IFD系统的性能增益,本文考虑了两种不同的IFD系统,即成对IFD(P-IFD)和3节点形式IFD(3n-IFD)在IEEE 802.11ax室外大型BSS场景下的情况。 。此外,本文采用了一种直观的空间调度(SSC)算法来减少IFD节点的额外CCI。数值结果表明,借助SSC可以降低自干扰消除(SIC)的要求,并且可以减轻IFD设备的实施负担。此外,数值结果表明3n-IFD的性能与P-IFD相似。 3n-IFD具有与传统HD电台的向后兼容性以及IFD模式的足够性能增益。

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