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A Wave-Based Request-Response Protocol for Latency Minimization in WSNs

机译:WSN中基于波的延迟最小化的请求-响应协议

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摘要

Transmission latency is a key performance metrics in most wireless sensor network (WSN) applications. Nodes in a WSN often keep their radio transceivers off, and turn them on periodically using a duty cycling mechanism. The latter is a major source of delay in the network, because transmissions must wait for the next receiver wake-up. In this paper, we present a cross-layer approach to minimize latency of a request-response (RR) protocol adopted in an IEEE 802.15.4-basedWSN where the IPv6 routing protocol for low-power and lossy networks (RPLs) is used. Extra wake-ups are generated dynamically to match the predicted arrival time of the response packet, in order to reduce the duty cycling delay. The proposed approach is verified with the Cooja simulator, relying on the Contiki operating system (OS). The observed experimental results show a shorter RR delay with respect to a phase alignment (PA) approach.
机译:传输延迟是大多数无线传感器网络(WSN)应用程序中的关键性能指标。 WSN中的节点经常关闭其无线电收发器,并使用占空比机制定期打开它们。后者是网络延迟的主要来源,因为传输必须等待下一个接收机唤醒。在本文中,我们提出了一种跨层方法,以最小化基于IEEE 802.15.4的WSN中采用的请求-响应(RR)协议的延迟,在该协议中,使用了用于低功耗和有损网络(RPL)的IPv6路由协议。动态生成额外的唤醒以匹配响应数据包的预计到达时间,以减少占空比循环延迟。依靠Contiki操作系统(OS),使用Cooja模拟器对提出的方法进行了验证。观察到的实验结果表明,相对于相位对准(PA)方法,RR延迟更短。

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