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A Double-slot Based Delay/Disruption Tolerant Routing Algorithm for IOT

机译:基于双时隙的物联网时延/容错路由算法

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In certain environment,IOT (Internet of Things) systems are with long time delay,interruption,low energy,and limited storage.The current Internet architecture and protocols are no longer valid for them.Current part-topological information routing algorithms of these networks are analysed in this paper.A double-slot and topology information based optimal routing algorithm is proposed.The proposed algorithm divides network living cycle into several time slots.Double-slot based routing can ensure most of the traffic completed before link interruption,which can offer tolerance for predictable link interruption.When choosing the optimal path,the proposed algorithm sets transmission delay and delay jitter rate as the path parameters to ensure reliability and stability of transmission.Due to the possibility of nodes fault,the proposed algorithm exploits alternate path to provide tolerance to unpredictable nodes fault.Simulation and performance analysis are implemented.Simulation results show that,with the proposed algorithm running in network,the success rate of data transfer is increased and the time delay is reduced without numerous redundant copies.
机译:在某些环境下,IOT(物联网)系统具有较长的延迟,中断,低能耗和有限的存储空间。当前的Internet体系结构和协议不再适用于它们。这些网络的当前部分拓扑信息路由算法是提出了一种基于双时隙和拓扑信息的最优路由算法。该算法将网络生存周期划分为多个时隙。基于双时隙的路由可以保证链路中断前完成大部分业务,可以提供在选择最优路径时,该算法将传输时延和时延抖动率作为路径参数,以保证传输的可靠性和稳定性。对不可预测的节点故障的容忍度。进行了仿真和性能分析。仿真结果表明该算法在网络中运行,无需大量冗余副本,提高了数据传输的成功率,减少了时延。

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