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A cellular pulse switching architecture for binary event sensing

机译:用于二进制事件检测的蜂窝脉冲切换架构

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This paper presents a novel energy-efficient pulse switching protocol for ultra-light-weight cellular sensor network applications. The key idea is to abstract a single pulse, as opposed to multi-bit packets, as the information exchange mechanism. Pulse switching is shown to be sufficient for event monitoring applications with binary sensing in terms of cellular localization. Event monitoring with conventional packet transport can be prohibitively energy-inefficient due to the communication, processing, and buffering overheads of the large number of bits within a packet's data, header, and preambles. The paper presents a joint MAC and Routing architecture for pulse switching with novel cellular event localization. Through simulation experiments, it is shown that pulse switching can be an effective means for event based networking, which can potentially replace packet transport when the information to be transported is binary in nature.
机译:本文提出了一种用于超轻量级蜂窝传感器网络应用的新型节能脉冲切换协议。关键思想是抽象一个脉冲而不是多位数据包作为信息交换机制。在蜂窝定位方面,脉冲切换已显示对于具有二进制感应的事件监视应用程序已经足够。由于数据包的数据,标头和前导码中大量比特的通信,处理和缓冲开销,使用常规数据包传输进行事件监视可能会导致能源效率低下。本文提出了一种具有新颖蜂窝事件定位功能的脉冲切换联合MAC和路由架构。通过仿真实验表明,脉冲切换可以成为基于事件的联网的有效手段,当要传输的信息本质上是二进制信息时,它可以潜在地取代数据包传输。

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