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Low Power Downlink MAC Protocols for Infrastructure Wireless Sensor Networks

机译:用于基础设施无线传感器网络的低功耗下行链路MAC协议

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This paper addresses low power medium access control (MAC) protocols for the downlink channel of infrastructure wireless sensor networks. Access points are assumed to be energy unconstrained. The trade-off between the power consumption of the sensor nodes and the transmission delay is analyzed, focusing on low traffic. We describe WiseMAC (Wireless Sensor MAC), a new protocol for the downlink of infrastructure wireless sensor networks. Another original contribution is the presentation and analysis of PTIP (Periodic Terminal Initiated Polling). Here, polling is used in the reversed direction as compared to common polling protocols. WiseMAC and PTIP are compared with PSM (Power Save Mode), the power save protocol used in both the IEEE 802.11 and IEEE 802.15.4 ZigBee standards. Analytical expressions are derived for the power consumption and the transmission delay for each protocol, as a function of the wake-up period. It is shown that WiseMAC provides, with low bit rate radio transceivers, a significantly lower power consumption than PSM. Although less energy efficient than WiseMAC and PSM, it is shown that PTIP can, thanks to its implementation simplicity, become attractive for applications tolerating large transmission delays.
机译:本文针对基础设施无线传感器网络的下行链路信道解决了低功耗媒体访问控制(MAC)协议。假设接入点能量不受限制。分析了传感器节点的功耗与传输延迟之间的权衡,重点是低流量。我们描述了WiseMAC(无线传感器MAC),一种用于基础设施无线传感器网络下行链路的新协议。另一个原始贡献是PTIP(定期终端启动轮询)的呈现和分析。在这里,与普通轮询协议相比,轮询的使用方向相反。 WiseMAC和PTIP与PSM(省电模式)进行了比较,PSM是在IEEE 802.11和IEEE 802.15.4 ZigBee标准中使用的省电协议。根据唤醒周期,得出每种协议的功耗和传输延迟的解析表达式。结果表明,WiseMAC为低比特率无线电收发器提供了比PSM低得多的功耗。尽管与WiseMAC和PSM相比,它的能源效率较低,但它显示出PTIP的实现简单性,对于容忍较大传输延迟的应用程序具有吸引力。

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