一种新的间歇连接移动网络协议

Niu Jianwei, Zhou Hang, Xiong Yong-ping, Sun Limin, Ma Jian
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引用次数: 0

摘要

在最近的研究中出现了间歇性连接的移动传感器网络(ICMSN),例如水下传感器网络、野生动物跟踪和以人为本的流感病毒监测。在这些网络中,由于节点密度和节点移动性低,传感器节点和汇聚节点之间没有端到端连接。因此,WSN中的传统路由协议对于ICMSN是不实用的,因为当没有完整的路由到接收器时,数据包将被丢弃。本文提出了一种高效的ICMSN路由协议,该协议由缓冲区管理和消息转发组成。缓冲区管理由两个相关组件组成:排队机制和清除机制。前者根据重要系数确定消息的发送或丢弃优先级,表示消息对QoS的要求。后者利用接收器生成的死亡向量来清除已经从网络传递的无用消息。消息转发基于节点投递概率来决定哪些传感器有资格进入下一跳,综合了对sink的会议可预测性、当前缓冲状态和剩余能量,提高了传感器向sink投递消息的可能性。实验结果表明,所提出的路由协议不仅支持不同内容的QoS要求,而且在传输比、延迟和资源消耗之间实现了良好的性能权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Protocol in Intermittent Connected Mobile Networks
Intermittent connected mobile sensor networks (ICMSN) have emerged in recent studies, e.g. underwater sensor networks, wildlife tracking and human-oriented flu virus monitoring. In these networks, there are no end to end connections from sensor nodes to sink nodes due to low node density and node mobility. Therefore, conventional routing protocols in WSN are not practical for ICMSN since packets will be dropped when no complete route to the sink is available. In this paper, we propose an efficient routing protocol for ICMSN, which is composed of buffer management and message forwarding. Buffer management consists of two related components: queuing mechanism and purging mechanism. The former determines priority of messages to transmit or discard based on the importance factor, which indicates the QoS requirement of the messages. The latter utilizes a death vector generated by the sink to purge useless messages that have been delivered from the network. Message forwarding makes decision on which sensors are qualified for next hop based on node delivery probability, which synthesizes the meeting predictability to the sink, current buffer state and residual energy and increases the likelihood that the sensor can deliver the message to the sink. Our experimental results show that the proposed routing protocol not only supports the QoS requirement of different content but also achieves the good performance tradeoff between delivery ratio, delay and resource consumption.
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