首页> 外文会议>Factory Communication Systems (WFCS), 2012 9th IEEE International Workshop on >Queue-MAC: A queue-length aware hybrid CSMA/TDMA MAC protocol for providing dynamic adaptation to traffic and duty-cycle variation in wireless sensor networks
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Queue-MAC: A queue-length aware hybrid CSMA/TDMA MAC protocol for providing dynamic adaptation to traffic and duty-cycle variation in wireless sensor networks

机译:Queue-MAC:队列长度感知的混合CSMA / TDMA MAC协议,用于动态适应无线传感器网络中的流量和占空比变化

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Existing low-power MAC protocols only provide low throughput because of the fixed low duty-cycle. This often leads to poor performance when dealing with time-constrained burst traffic. In this paper, we propose a new hybrid CSMA/TDMA MAC protocol, called Queue-MAC, that dynamically adapts the duty-cycle according to the current network traffic. The queue length of nodes is used as the network traffic indicator. When the traffic increases, the active CSMA period is accordingly extended by adding dynamic TDMA slots, allowing thus to efficiently handle burst traffic under real-time constraints. This protocol is implemented on the STM32W108 SOC chips and compared with both a fixed duty-cycle reference protocol and an optimized IEEE802.15.4 MAC protocol. Through extensive experimental measurements, we showed that our queue-length aware hybrid CSMA/TDMA MAC protocol largely outperforms the compared protocols. The proposed protocol can be easily implemented through slight adaptation of the IEEE802.15.4 standard. It presents an optimal bandwidth and energy allocation scheme according to the traffic to be carried. In fact, low-duty cycle, so low power consumption is preserved during light traffic load period, while high throughput is obtained during heavy burst load period.
机译:由于固定的低占空比,现有的低功率MAC协议仅提供低吞吐量。在处理时间受限的突发流量时,这通常会导致性能不佳。在本文中,我们提出了一种新的混合CSMA / TDMA MAC协议,称为Queue-MAC,它可以根据当前网络流量动态调整占空比。节点的队列长度用作网络流量指示器。当流量增加时,通过添加动态TDMA时隙相应地延长了有效CSMA周期,从而可以在实时约束下有效地处理突发流量。该协议在STM32W108 SOC芯片上实现,并与固定占空比参考协议和优化的IEEE802.15.4 MAC协议进行了比较。通过广泛的实验测量,我们证明了了解队列长度的混合CSMA / TDMA MAC协议的性能大大优于比较的协议。通过稍微修改IEEE802.15.4标准,可以轻松实现所建议的协议。根据要承载的流量,提出了一种最佳的带宽和能量分配方案。实际上,它的占空比很低,因此在轻载负载期间可以保持较低的功耗,而在突发突发负载期间则可以实现高吞吐量。

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