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CL-ADSP: Cross-Layer Adaptive Data Scheduling Policy in Mobile Ad-hoc Networks

机译:CL-ADSP:移动自组织网络中的跨层自适应数据调度策略

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Multi-Path Transmission Control Protocol (MPTCP), leading transport layer protocol, radically utilizes multi-path communication technology. MPTCP's vital objective is to exploit the multi-interface capability available at the end-host. Nevertheless, the protocol majorly suffers from lower channel utilization because of its abrupt congestion window (cwnd) growth policy hence, experiences soaring throughput degradation. Further, multiple available paths for transmission severely degrades MPTCP's performance as higher re-ordering is required at the receiver end because of dissimilar wireless path characteristics (e.g., bandwidth, loss rate (either due to congestion or unreliability of wireless channel) and delay). Thereby, it leads to the serious rise in both the issues of buffer-blocking and un-necessary retransmissions. Although, a few solutions have been suggested that effectively schedule and balance the load over available qualified paths. But, most of these solutions were not able to handle the redundant cwnd growth adaptations. This paper suggests applying a Cross-Layer based Adaptive Data Scheduling Policy (CL-ADSP) to MPTCP, which takes care of dissimilar path characteristics and unreasonable cwnd growth adaptations effectively. CL-ADSP uses a delay-variation-based adaptive fast retransmission policy. Moreover, CL-ADSP dynamically exploits the average MAC-layer retries as a parameter which appropriately shows the early sign of network overload. The simulation results exemplify the effectiveness of CL-ADSP concerning better throughput, improved file transfer time with lesser End-To-End (ETE) delay and number of timeout packets. In fact, when compared with MPTCP, CL-ADSP offers 24% better throughput with 36% lesser timeout packets, while, 10% improved packet delivery ratio with 2.25% lesser average ETE delay results. CL-ADSP also offers 23% improved file transfer time and 24% lesser normalized routing load over MPTCP. (C) 2019 Elsevier B.V. All rights reserved.
机译:领先的传输层协议多路径传输控制协议(MPTCP)从根本上利用了多路径通信技术。 MPTCP的重要目标是开发终端主机上可用的多接口功能。然而,该协议由于其突然的拥塞窗口(cwnd)增长策略而主要遭受较低的信道利用率,因此吞吐量急剧上升。此外,由于不同的无线路径特性(例如,带宽,丢失率(由于无线信道的拥塞或不可靠)和延迟),在接收器端需要更高的重排序,用于传输的多个可用路径严重降低了MPTCP的性能。因此,这导致缓冲区阻塞和不必要的重传问题的严重增加。但是,已经提出了一些解决方案,可以有效地调度和平衡可用合格路径上的负载。但是,大多数这些解决方案都无法处理冗余的cwnd增长适应。本文建议将基于跨层的自适应数据调度策略(CL-ADSP)应用于MPTCP,它可以有效地照顾到不同的路径特征和不合理的种群增长适应。 CL-ADSP使用基于延迟变化的自适应快速重传策略。此外,CL-ADSP动态利用平均MAC层重试次数作为参数,可以适当显示网络过载的早期迹象。仿真结果证明了CL-ADSP在提高吞吐量,缩短文件传输时间,减少端到端(ETE)延迟和超时数据包数量方面的有效性。实际上,与MPTCP相比,CL-ADSP的吞吐量提高了24%,超时数据包减少了36%,而数据包传输率提高了10%,平均ETE延迟减少了2.25%。 CL-ADSP的文件传输时间比MPTCP缩短了23%,归一化路由负载减少了24%。 (C)2019 Elsevier B.V.保留所有权利。

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