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TCP Wave: A new reliable transport approach for future internet

机译:TCP Wave:面向未来互联网的新型可靠传输方法

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Current and future communication scenarios are very different from those in which TCP was conceived and developed, bringing new protocol requirements. Performance optimization is usually pursued with patching of the traditional TCP implementations. Following an alternative approach, TCP Wave has been designed with the primary goal to satisfy new requirements coming from current networks, such as adaptation to bandwidth/delay changes (due to mobility, dynamic switching, handover), efficient management of spurious losses as well as link interruption, optimal exploitation of very high link capacity and efficient transmission of small objects, as in most of Web applications (Web browsing, sensor apps, SCADA, M2M, etc.), irrespective of the underlying link characteristics. Protocol fairness, TCP friendliness, congestion and flow control and error recovery are also guaranteed. TCP Wave replaces the window-based transmission paradigm of the standard TCP with a burst-based transmission, the ACK-clock scheduling with a self managed timer and the RTT-based congestion control loop with an Ack-based Capacity and Congestion Estimation (ACCE) module. As a valuable study case, the novel TCP Wave capabilities has been validated on a generic NS-3 simulation testbed where all the most challenging events impacting on transport protocol can occur. (C) 2016 Elsevier B.V. All rights reserved.
机译:当前和将来的通信方案与TCP的构思和开发完全不同,带来了新的协议要求。通常通过修补传统TCP实现来追求性能优化。按照另一种方法,TCP Wave的主要目标是满足当前网络的新要求,例如适应带宽/延迟变化(由于移动性,动态切换,切换),有效管理杂散损耗以及像大多数Web应用程序(Web浏览,传感器应用程序,SCADA,M2M等)中一样,无论潜在的链接特性如何,都可以进行链接中断,超高链接容量的最佳利用以及小对象的有效传输。还保证了协议公平性,TCP友好性,拥塞和流控制以及错误恢复。 TCP Wave使用基于突发的传输,使用自管理计时器的ACK时钟调度以及使用基于Ack的容量和拥塞估计(ACCE)的基于RTT的拥塞控制环路来代替标准TCP的基于窗口的传输范例模块。作为一个有价值的研究案例,新颖的TCP Wave功能已经在通用的NS-3仿真试验台上得到验证,在该试验台上,可能会发生影响传输协议的所有最具挑战性的事件。 (C)2016 Elsevier B.V.保留所有权利。

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