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Congestion control vs. link failure: TCP behavior in mmWave connected vehicular networks

机译:拥塞控制与链路故障:mmWave连接的车载网络中的TCP行为

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The millimeter-wave (mmWave) frequency band presents a viable communication platform for the exchange of large amount of data and communications of Connected Vehicular Networks (CVNs). Its ability to support multi-gigabit data rates and high spatial reuse is especially crucial because of the large volume of data produced by physical entity each second. However, its susceptibility the deafness problem, blockages, and beam misalignment is a major impediment, especially in highly mobile environment such as CVNs. Especially, CVNs are related to the life of human being, network reliability is one of the most important issue. To resolve this problem, recent studies on mmWaves have focused more on the PHY/MAC Layers, while fewer studies have examined the transport layer. In this paper, we examine the performance of TCP in mmWave based vehicular networks, focusing particularly on the effects of congestion and link failure. In addition, we highlight the problems of using conventional TCP in an mmWave CVNs and propose an real-time wireless TCP (RTW-TCP) implementation such mmWave environment. Finally, we compare the performance of the proposed RTW-TCP and conventional TCP. The simulation results show that the proposed scheme maximizes the total network resources by distinguishing link failure from network congestion in an mmWave CVNs. (C) 2019 Elsevier B.V. All rights reserved.
机译:毫米波(mmWave)频带提供了一个可行的通信平台,用于交换大量数据和连接的车载网络(CVN)。由于每秒由物理实体产生的大量数据,其支持数千兆位数据速率和高空间复用性的能力尤其重要。但是,其易感性,耳聋问题,阻塞和光束未对准是主要障碍,尤其是在高度移动的环境(例如CVN)中。特别是,CVN与人们的生活息息相关,网络可靠性是最重要的问题之一。为了解决这个问题,最近对毫米波的研究更多地集中在PHY / MAC层,而研究传输层的研究则更少。在本文中,我们检查了基于mmWave的车载网络中TCP的性能,特别关注了拥塞和链路故障的影响。另外,我们重点介绍了在mmWave CVN中使用常规TCP的问题,并提出了一种实时无线TCP(RTW-TCP)实现,例如mmWave环境。最后,我们比较了建议的RTW-TCP和常规TCP的性能。仿真结果表明,该方案通过将毫米波CVN中的链路故障与网络拥塞区分开来,最大化了总网络资源。 (C)2019 Elsevier B.V.保留所有权利。

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