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Concurrent Transmission-based Packet Concatenation in Wireless Sensor Networks

机译:无线传感器网络中基于并行传输的分组级联

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摘要

Concurrent transmission, a novel communication paradigm, has been shown to effectively achieve reliable and energy-efficient flooding in low-power wireless networks. With multiple nodes exploiting a receive-and-forward scheme, this technique works effectively in one-to-many scenarios. However, application-level scheduling has to be introduced for data collection applications. In this paper, we propose Packet-in-Packet (PiP), an energy-efficient paradigm requiring no application-level scheduling for timely data collection in low-power wireless sensor networks. PiP builds on concurrent transmissions, exploiting constructive interference and the capture effect to achieve high reliability, low latency, and high energy efficiency. Moreover, PiP uses a packet concatenation capability to gather single-hop information in a best-effort manner. Experimental results show that PiP achieves high reliability in all experimental scenarios of a real-world testbed.
机译:并发传输是一种新颖的通信范例,已被证明可以有效地实现低功耗无线网络中可靠且节能的洪水泛滥。随着多个节点利用一种接收转发方案,该技术在一对多情况下有效地工作。但是,必须为数据收集应用程序引入应用程序级调度。在本文中,我们提出了数据包打包(PiP-in-Packet,PiP),一种节能的范例,不需要应用程序级的调度即可在低功率无线传感器网络中及时收集数据。 PiP建立在并发传输的基础上,利用相长干扰和捕获效应来实现高可靠性,低延迟和高能效。此外,PiP使用数据包串联功能以尽力而为的方式收集单跳信息。实验结果表明,在实际测试平台的所有实验场景中,PiP都具有很高的可靠性。

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