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Multichannel access for bandwidth improvement in IEEE 802.15.4 Wireless Sensor Networks

机译:多通道访问以提高IEEE 802.15.4无线传感器网络的带宽

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In this paper, we propose a new multichannel allocation protocol for ZigBee/IEEE 802.15.4 networks. The main goal is to improve the global throughput which is basically insufficient to satisfy high bandwidth requirements for applications like monitoring or traffic control. The solution is based on the availability of multiple channels on current low-cost, low-energy radio transceivers, such as TI/Chipcon CC2420, which can be easily tuned dynamically to different frequencies. This possibility can be exploited to increase the number of simultaneous transmissions on adjacent links. The allocation of the different channels is centralized and distributed by the coordinator thanks to a function designed to compute the channel offset between two successive children routers. In the nodes, the switching process between the transmission and the reception channels is triggered starting from the PHY primitive available on the transceiver. The evaluation shows that the proposed protocol improves the global throughput by a factor between 2 and 5, depending on the scenario, compared to the single-channel solution or a random channel allocation.
机译:在本文中,我们为ZigBee / IEEE 802.15.4网络提出了一种新的多通道分配协议。主要目标是提高全局吞吐量,这基本上不足以满足监视或流量控制等应用程序对高带宽的要求。该解决方案基于当前低成本,低能耗的无线电收发器(例如TI / Chipcon CC2420)上多个通道的可用性,可以轻松地将其动态调谐到不同的频率。可以利用这种可能性来增加相邻链路上同时传输的数量。得益于旨在计算两个连续子路由器之间的信道偏移的功能,协调器可以集中并分配不同的信道。在节点中,从收发器上可用的PHY原语开始触发发送和接收通道之间的切换过程。评估显示,与单信道解决方案或随机信道分配相比,根据方案,建议的协议将全局吞吐量提高了2到5倍。

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