G. Choudhary, M. Kanagarathinam, Harikrishnan Natarajan, K. Arunachalam, Sujith Rengan Jayaseelan, Gaurav Sinha, D. Das
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In RR-MP-QUIC, multiple pipes are created between source as well as destination and assign a pipe to each object in a round-robin manner. We set up the testbed over live air commercial network. The experimental results reveal that the RR-MP-QUIC Page Load Time (PLT) of a web page decreases by 76% with respect to QUIC. Furthermore, to improve the performance of RR-MPQUIC, we proposed CBA-MP-QUIC, which optimally creates pipes, efficiently schedules the objects and understands with respect to cross-layer (wireless channel characteristics and load in data link layer) parameters. Hence this adapts dynamically to the network conditions and maintains fairness between the applications in User Equipment (UE) and within the same application. 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引用次数: 7
摘要
为了提高传输控制协议(TCP)的性能,引入了快速UDP Internet连接(QUIC)。然而,从最近的文献来看,在无线网络中,QUIC并没有充分利用链路容量,因为不同的网络无线介质的特性不同。据我们所知,本文首次提出了两种新的协议来克服无线网络的挑战,即MultiPipe(多会话)QUIC协议(MP-QUIC)。MP-QUIC的两个新协议是(i)轮询MP-QUIC (RR-MP-QUIC)和(ii)跨层突发感知MP-QUIC (CBA-MP-QUIC)。在RR-MP-QUIC中,在源和目标之间创建多个管道,并以轮询方式为每个对象分配一个管道。我们在实时航空商业网络上建立了测试平台。实验结果表明,相对于QUIC, rp - mp -QUIC的网页加载时间(PLT)减少了76%。此外,为了提高RR-MPQUIC的性能,我们提出了CBA-MP-QUIC,它可以最优地创建管道,有效地调度对象,并理解跨层(无线信道特性和数据链路层中的负载)参数。因此,这可以动态地适应网络条件,并保持用户设备(UE)和同一应用程序中的应用程序之间的公平性。CBA-MP-QUIC在现场空气中的实验结果表明,与QUIC相比,CBA-MP-QUIC可将网页PLT提高143%。
Novel MultiPipe QUIC Protocols to Enhance the Wireless Network Performance
To improve the performance of the Transmission Control Protocol (TCP), the Quick UDP Internet Connections (QUIC) was introduced. However, from the recent literature, in the wireless networks, QUIC does not fully utilize the link capacity, because of varying network wireless medium characteristics for an application. To the best of our knowledge, for the first time, this paper has proposed two novel protocols to overcome the wireless network’s challenges, by MultiPipe (multi sessions) QUIC protocol (MP-QUIC). The two MP-QUIC’s novel protocols are (i) Round Robin MP-QUIC (RR-MP-QUIC) and (ii) Cross-Layer Burst Aware MP-QUIC (CBA-MP-QUIC). In RR-MP-QUIC, multiple pipes are created between source as well as destination and assign a pipe to each object in a round-robin manner. We set up the testbed over live air commercial network. The experimental results reveal that the RR-MP-QUIC Page Load Time (PLT) of a web page decreases by 76% with respect to QUIC. Furthermore, to improve the performance of RR-MPQUIC, we proposed CBA-MP-QUIC, which optimally creates pipes, efficiently schedules the objects and understands with respect to cross-layer (wireless channel characteristics and load in data link layer) parameters. Hence this adapts dynamically to the network conditions and maintains fairness between the applications in User Equipment (UE) and within the same application. Experimental result of CBA-MP-QUIC on live air improves the web page PLT by 143% with respect to QUIC.