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Extensions of the IEEE802.15.4 protocol for ultra-low energy real-time communication

机译:IEEE802.15.4超低能源实时通信协议的扩展

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Wireless sensor networks have found their way into a wide range of applications among which environmental monitoring systems have attracted increasing interests of researchers. The main challenges for the applications are scalability of the network size and energy efficiency of the spatially distributed motes. These devices are mostly battery-powered and spend most of their energy budget on the radio transceiver module. A so-called Wake-On-Radio (WOR) technology can be used to achieve a reasonable balance among power consumption, range, complexity and response time. In this paper, a novel design for integration of WOR into IEEE802.1.5.4 is presented, which flexibly allows trade-offs in energy consumption between sender and receiver station, between real-time capability and energy consumption. For identical behavior, the proposed scheme is significantly more efficient than other schemes, which were proposed in recent publications, while preserving backward compatibility with standard IEEE802.15.4 transceivers.
机译:无线传感器网络已经找到了进入广泛的应用,其中环境监测系统引起了研究人员的越来越兴趣。应用的主要挑战是空间分布式电动机的网络尺寸和能量效率的可扩展性。这些设备主要是电池供电,并在无线电收发器模块上花费大部分能量预算。所谓的唤醒无线电(WOR)技术可用于在功耗,范围,复杂性和响应时间之间实现合理的平衡。在本文中,提出了一种用于整合IEEE802.1.5.4的新颖设计,这灵活允许在寄主和接收站之间的能耗中进行权衡,在实时能力和能量消耗之间。对于相同的行为,所提出的方案比其他方案更有效,这些方案是在最近的出版物中提出的,同时保留与标准IEEE802.15.4收发器的向后兼容性。

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