利用反向信道进行拥塞控制的深空自治网络

B. Panigrahi, Yanxiao Zhao, K. Sohraby
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引用次数: 1

摘要

星际节点间的超长传播延迟给存储转发式深空自治网络(DSAN)的研究带来了挑战。长传播延迟加上行星无线节点和中继的能源短缺,给拥塞控制带来了新的挑战。在本文中,我们利用节点间的长传播延迟,提出了一种新的拥塞控制方法。长延迟通道可以用作内存资源。由于中间节点(如卫星或机器人航天器)缺乏存储空间,数据包不会被丢弃,而是被传输回源。这大大减少了数据包的丢失,降低了每个数据包的能耗。此外,该方法还提供中继节点拥塞状态的反馈。因此,源能够动态控制源中继信道中的流量,直到拥塞减轻。研究了两种被提出的协议,即(i)反向信道(不含速率控制)和(ii)具有速率控制的反向信道,并与不使用反向信道的传统协议进行了比较。大量的仿真结果表明,利用反向信道,特别是带速率控制的反向信道,在能量消耗和每个成功数据包的重传率方面都远远优于传统的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deep space autonomous network using reverse channel for congestion control
The extremely long propagation delay between interplanetary nodes poses challenges to the investigation of Store-and-forward Deep Space Autonomous Network (DSAN). Long propagation delay combined with scarcity of energy at the planetary wireless nodes and relays, introduces new dimensions to the congestion control challenge. In this paper, we take advantage of long propagation delay between nodes and propose a novel approach for congestion control. The long delayed channel can be utilized as a memory resource. Instead of dropping the packets due to lack of storage at the intermediate nodes such as satellite or a robotic spacecraft, they are transmitted back to the source. This significantly reduces packet loss, and lowers the per packet energy consumption. In addition, this method provides feedback on the congestion status of the relay node. Consequently, the source is able to dynamically control traffic flow in the source-relay channel until congestion is abated. Two proposed protocols, i.e., (i) reverse channel (without rate control) and (ii) reverse channel with rate control are investigated, and compared with a conventional protocol where no reverse channel is utilized. Extensive simulations are conducted which validate that the performance with reverse channel, especially reverse channel with rate control, far outweigh the conventional approach, in terms of energy consumption, and retransmission per successful packet.
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