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Traffic separation using dual Wi-Fi interface to enhance WLAN system throughput

机译:使用双Wi-Fi接口进行流量分离以提高WLAN系统的吞吐量

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Frame collisions in a wireless local area network (WLAN) reduce system throughput and remain an open problem in WLANs. A number of studies have proposed methods to solve this problem and improve WLAN system throughput successfully. However, some of the methods and the conventional optional functions of WLAN such as the Request to Send/Clear to Send (RTS/CTS) mechanism and channel bonding work well only in specific cases, and their efficiency relies heavily on traffic in the WLAN. In this paper, we propose a cross-layer traffic separation scheme that enables WLAN systems to improve their performance by using WLAN options more effectively than a conventional WLAN. We focus on the characteristics of traffic in the media access control (MAC) layer. In the MAC mechanism, stations (STAs) employing User Datagram Protocol (UDP) uplink flows tend to cause frame collisions, whereas STAs using Transmission Control Protocol (TCP) flows tend not to cause collisions because the TCP congestion control manages the density of traffic. In the proposed scheme, STAs use dual WLAN interfaces; traffic is separated into two categories, and each category is sent through each interface. WLAN systems select options on each interface in accordance with the characteristics of the traffic at hand. We evaluate the performance of our proposed scheme through a computer simulation. The results show that the proposed scheme increases system throughput by up to 250% compared to conventional WLAN and effects a greater degree of fairness between uplinks and downlinks.
机译:无线局域网(WLAN)中的帧冲突会降低系统吞吐量,并仍然是WLAN中的一个开放问题。大量研究提出了解决此问题并成功提高WLAN系统吞吐量的方法。但是,WLAN的某些方法和常规可选功能(例如请求发送/清除发送(RTS / CTS)机制和信道绑定)仅在特定情况下才能很好地工作,它们的效率在很大程度上取决于WLAN中的流量。在本文中,我们提出了一种跨层流量分离方案,该方案使WLAN系统比传统WLAN更有效地使用WLAN选项来提高其性能。我们关注媒体访问控制(MAC)层中流量的特征。在MAC机制中,使用用户数据报协议(UDP)上行流的站(STA)倾向于引起帧冲突,而使用传输控制协议(TCP)流的STA倾向于不引起冲突,因为TCP拥塞控制管理流量的密度。在所提出的方案中,STA使用双WLAN接口。流量分为两个类别,每个类别都是通过每个接口发送的。 WLAN系统根据现有流量的特性在每个接口上选择选项。我们通过计算机仿真评估我们提出的方案的性能。结果表明,与传统的WLAN相比,该方案将系统吞吐量提高了250%,并在上行链路和下行链路之间实现了更大程度的公平性。

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