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Improving Congestion Control of TCP for Constrained IoT Networks

机译:改善TCP对约束IOT网络的拥塞控制

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摘要

For smooth integration with middleboxes on the Internet, TCP (Transmission Control Protocol) is favorably considered as a transport-layer protocol for IoT (Internet of Things) networks. In constrained networks, TCP tends to perform well with a small window size. For example, the uIP (micro IP) TCP/IP stack sets the TCP window size to one segment by default. In such a case, managing the retransmission timer is a primary approach to congestion control. In this paper, we examine the congestion control mechanism of TCP in the uIP stack using grid topology networks. In the preliminary test using the Cooja network simulator, the results show that the original uIP TCP causes lots of retransmissions when a radio duty cycling mechanism such as ContikiMAC is used. One main reason is that, once retransmission is deemed to be necessary, the original uIP TCP sets the retransmission timer based on the fixed RTO (retransmission timeout) before performing a retransmission. Since ContikiMAC may cause large RTT (round-trip time) variations due to the hidden terminal problem, the retransmission timer based on the fixed RTO value may cause lots of retransmissions. To address the problem, we propose a new scheme for managing the retransmission timer which adopts the notion of weak RTT estimation of CoCoA, exponential backoffs with variable limits, and dithering. Simulation results show that our proposed scheme reduces retransmissions while enhancing throughput and fairness when an RDC (radio duty cycling) mechanism is used.
机译:对于与因特网上的中间盒的平滑集成,TCP(传输控制协议)有利地被认为是用于IOT(物联网)网络的传输层协议。在约束网络中,TCP往往与小窗口大小相吻合。例如,UIP(微IP)TCP / IP堆栈默认将TCP窗口大小设置为一个段。在这种情况下,管理重传计时器是拥塞控制的主要方法。在本文中,我们使用网格拓扑网络研究了UIP堆栈中TCP的拥塞控制机制。在使用Cooja网络模拟器的初步测试中,结果表明,当使用无线电循环机制如Contikimac时,原始UIP TCP导致许多重传。一个主要原因是,一旦认为需要重传,原始UIP TCP就基于在执行重传之前,基于固定的RTO(重传超时)设置重传计时器。由于ContikiMac可能导致由于隐藏的终端问题引起的大RTT(往返时间)变化,因此基于固定RTO值的重传定时器可能导致大量重传。为了解决这个问题,我们提出了一种管理重传计时器的新方案,它采用了可可的RTT估计的弱RTT估计,具有可变限制和抖动的概念。仿真结果表明,当使用RDC(无线电循环)机制时,我们所提出的方案减少了重传,同时提高了吞吐量和公平性。

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