首页> 外文期刊>Mobile Computing, IEEE Transactions on >Forwarding Redundancy in Opportunistic Mobile Networks: Investigation, Elimination and Exploitation
【24h】

Forwarding Redundancy in Opportunistic Mobile Networks: Investigation, Elimination and Exploitation

机译:机会移动网络中的冗余转发:调查,消除和利用

获取原文
获取原文并翻译 | 示例

摘要

Opportunistic mobile networks consist of mobile devices which are intermittently connected via short-range radios. Forwarding in such networks relies on selecting relays to carry and deliver data to destinations upon opportunistic contacts. Due to the intermittent network connectivity, relays in current forwarding schemes are selected in a distributed manner. The contact capabilities of relays hence may overlap when they contact the same nodes and cause . This redundancy reduces the efficiency of resource utilization in the network, and may impair the forwarding performance if being unconsciously ignored. In this paper, based on investigation results on the characteristics of forwarding redundancy in realistic mobile networks, we propose methods to eliminate unnecessary forwarding redundancy and ensure efficient utilization of network resources. We first develop techniques to eliminate forwarding redundancy with global network information, and then improve these techniques to be operable in a fully distributed manner with limited network information. We furthermore propose adaptive forwarding strategy to intentionally control the amount of forwarding redundancy and satisfy the required forwarding performance with minimum cost. Extensive trace-driven evaluations show that our schemes effectively enhance forwarding performance with much lower cost.
机译:机会移动网络由通过短距离无线电间歇连接的移动设备组成。在这种网络中的转发依赖于选择中继以在机会联系时将数据传送和传送到目的地。由于网络连接的间歇性,当前转发方案中的中继以分布式方式进行选择。因此,当继电器接触相同节点并引起时,继电器的接触能力可能会重叠。这种冗余降低了网络中资源利用的效率,并且如果不知不觉地被忽略,则可能损害转发性能。本文基于对现实移动网络中转发冗余特性的调查结果,提出了消除不必要的转发冗余并确保网络资源有效利用的方法。我们首先开发了消除具有全局网络信息的转发冗余的技术,然后将这些技术改进为在有限的网络信息下以完全分布式的方式可操作的技术。我们还提出了自适应转发策略,以有意地控制转发冗余量并以最小的成本满足所需的转发性能。大量的跟踪驱动评估表明,我们的方案以更低的成本有效地提高了转发性能。

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