...
首页> 外文期刊>Ad hoc networks >A congestion control framework for delay- and disruption tolerant networks
【24h】

A congestion control framework for delay- and disruption tolerant networks

机译:延迟和中断耐受网络的拥塞控制框架

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Delay and Disruption Tolerant Networks (DTNs) are networks that experience frequent and long-lived connectivity disruptions. Unlike traditional networks, such as TCP/IP Internet, DTNs are often subject to high latency caused by very long propagation delays (e.g., interplanetary communication) and/or intermittent connectivity. In DTNs there is no guarantee of end-to-end connectivity between source and destination. Such distinct features pose a number of technical challenges in designing core network functions such as routing and congestion control mechanisms. Detecting and dealing with congestion in DTNs is an important problem since congestion can significantly deteriorate DTN performance. Most existing DTN congestion control mechanisms have been designed for a specific DTN application domain and have been shown to exhibit inadequate performance when used in different DTN scenarios and conditions.In this paper, we introduce Smart-DTN-CC, a novel DTN congestion control framework that adjusts its operation automatically based on the dynamics of the underlying network and its nodes. Smart-DTN-CC is an adaptive and distributed congestion aware framework that mitigates congestion using reinforcement learning, a machine learning technique known to be well suited to problems where: (1) the environment, in this case the network, plays a crucial role; and (2) yet, no prior knowledge about the target environment can be assumed, i.e., the only way to acquire information about the environment is to interact with it through continuous online learning.Smart-DTN-CC nodes receive input from the environment (e.g., buffer occupancy, neighborhood membership, etc), and, based on that information, choose an action to take from a set of possible actions. Depending on the selected action's effectiveness in controlling congestion, a reward will be given. Smart-DTN-CC's goal is to maximize the overall reward which translates to minimizing congestion. To our knowledge, Smart-DTN-CC is the first DTN congestion control framework that has the ability to automatically and continuously adapt to the dynamics of the target environment. As demonstrated by our experimental evaluation, Smart-DTN-CC is able to consistently outperform existing DTN congestion control mechanisms under a wide range of network conditions and characteristics. (C) 2019 Elsevier B.V. All rights reserved.
机译:延迟和中断容忍网络(DTN)是经历频繁和长期连接的连接中断的网络。与传统网络(例如TCP / IP Internet)不同,DTN经常受到由非常长的传播延迟(例如,行星际通信)和/或间歇连接引起的高延迟。在DTN中,无法保证源和目的地之间的端到端连接。这种明显的特征在设计核心网络功能时构成了许多技术挑战,例如路由和拥塞控制机制。检测和处理DTN中的拥塞是一个重要问题,因为拥塞可以显着恶化DTN性能。大多数现有的DTN拥塞控制机制专为特定的DTN应用领域设计,并且已被证明在不同的DTN场景和条件下使用时表现出不充分的性能。在本文中,我们介绍了Smart-DTN-CC,这是一种新型DTN拥塞控制框架基于基于底层网络及其节点的动态,自动调整其操作。 SMART-DTN-CC是一种自适应和分布式拥塞意识框架,可利用强化学习缓解拥塞,已知的机器学习技术非常适合问题:(1)环境,在这种情况下,网络,起到至关重要的作用; (2)然而,可以假设关于目标环境的先验知识,即获取有关环境信息的唯一方法是通过连续在线学习与其交互.Smart-DTN-CC节点接收来自环境的输入(例如,缓冲区占用,邻域成员资格等),并且根据该信息,选择从一组可能的动作中获取的操作。根据所选动作在控制拥塞方面的有效性,将给出奖励。 SMART-DTN-CC的目标是最大限度地提高转化为最小化拥塞的整体奖励。据我们所知,Smart-DTN-CC是第一个DTN拥塞控制框架,具有自动和不断适应目标环境的动态的能力。如我们实验评估所示,Smart-DTN-CC能够在广泛的网络条件和特性下始终如一地占现有的DTN拥塞控制机制。 (c)2019 Elsevier B.v.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号