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首页> 外文期刊>Wireless Communications, IEEE Transactions on >A-Duplex: Medium Access Control for Efficient Coexistence Between Full-Duplex and Half-Duplex Communications
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A-Duplex: Medium Access Control for Efficient Coexistence Between Full-Duplex and Half-Duplex Communications

机译:A双工:用于全双工和半双工通信之间高效共存的介质访问控制

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摘要

As full-duplex wireless communication evolves into a practical technique, it will be built into communication nodes in many application scenarios. However, it is difficult to do so for legacy communication nodes. Thus, full-duplex communication nodes will coexist with half-duplex communication nodes in the same application environment. In this paper, a wireless local area network with a full-duplex access point (AP) and half-duplex clients is studied, and a media access control (MAC) protocol called asymmetrical duplex (A-Duplex) is developed to support efficient coexistence between half-duplex clients and the full-duplex AP. A-Duplex explores packet-alignment-based capture effect to establish dual links between the AP and two different clients. In this way, the capability of a full-duplex AP can be utilized by half-duplex clients, which leads to much improved network throughput. Moreover, to ensure fairness of the MAC protocol, a virtual deficit round-robin algorithm is proposed for the AP to select appropriate half-duplex clients for dual-link setup. A-Duplex does not require any change in the physical layer of half-duplex clients; only an update of MAC driver is necessary. Thus, it is well suited for coexistence between half-duplex clients and a full-duplex AP. Both analysis and simulations are conducted to evaluate performance of A-Duplex. Results show that it improves the throughput by 48% and 188% and reduces the average packet delay by 26% and 22%, as compared to the IEEE 802.11 Distributed Coordination Function with and without RTS/CTS, respectively. Moreover, the throughput remains steady as the number of clients grows. A-Duplex also maintains a high level of fairness.
机译:随着全双工无线通信发展成为一种实用技术,它将在许多应用场景中内置于通信节点中。但是,对于传统通信节点,很难做到这一点。因此,在同一应用程序环境中,全双工通信节点将与半双工通信节点共存。本文研究了一种具有全双工访问点(AP)和半双工客户端的无线局域网,并开发了一种称为非对称双工(A-Duplex)的媒体访问控制(MAC)协议以支持有效的共存。在半双工客户端和全双工AP之间。 A-Duplex探索基于数据包对齐的捕获效果,以在AP与两个不同客户端之间建立双链路。这样,半双工客户端可以利用全双工AP的功能,从而大大提高了网络吞吐量。此外,为了确保MAC协议的公平性,提出了一种虚拟亏缺轮询算法,供AP选择合适的半双工客户端进行双链路设置。半双工不需要对半双工客户端的物理层进行任何更改;只需更新MAC驱动程序即可。因此,它非常适合半双工客户端和全双工AP之间的共存。进行分析和仿真以评估A-Duplex的性能。结果表明,与具有和不具有RTS / CTS的IEEE 802.11分布式协调功能相比,它分别将吞吐量提高了48%和188%,并将平均数据包延迟减少了26%和22%。此外,随着客户端数量的增长,吞吐量保持稳定。 A-Duplex还保持较高的公平性。

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