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RC-MAC: A Receiver-Centric MAC Protocol for Event-Driven Wireless Sensor Networks

机译:RC-MAC:事件驱动的无线传感器网络的以接收器为中心的MAC协议

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Event-driven wireless sensor networks (WSNs) usually operate under light traffic load. However, when an event is detected, a large number of packets may be generated. A MAC protocol designed for this kind of WSNs should be able to swiftly adapt to the two conditions. Most WSN MAC protocols are optimized for light traffic for the energy efficiency consideration. In this paper, we propose a novel receiver-centric MAC protocol called RC-MAC that seamlessly integrates duty cycling and receiver-centric scheduling, providing high throughput without sacrificing the energy efficiency. To handle bursty traffic triggered by an event, RC-MAC takes advantage of the underlying data gathering tree structure of WSNs and the multichannel technique supported by current IEEE 802.15.4 RF transceivers to assist scheduling of medium access. The throughput is improved in two phases with receiver-centric medium access scheduling and distributed channel assignment. First, on a data gathering tree, a receiver is able to coordinate the medium access of multiple senders so as to reduce collisions and achieve high throughput. Second, different receivers coordinate their senders in different channels and the throughput is further improved by allowing parallel data gathering. Observing packet processing time on low cost sensor nodes, we design a scheduling pattern that ensures fairness between source nodes without sacrificing the throughput. We evaluate the performance of our RC-MAC through measurements of an implementation in TinyOS on TelosB motes and extensive ns-2 simulations. Compared with contention-based and scheduling-based MAC protocols, we show that the throughput and the fairness under heavy traffic load are significantly improved by the receiver-centric scheduling. Due to the high throughput, the energy efficiency is also improved.
机译:事件驱动的无线传感器网络(WSN)通常在轻载下运行。但是,当检测到事件时,可能会生成大量数据包。为这种WSN设计的MAC协议应该能够迅速适应这两种情况。考虑到能源效率,大多数WSN MAC协议针对光流量进行了优化。在本文中,我们提出了一种称为RC-MAC的新颖的以接收器为中心的MAC协议,该协议无缝集成了占空比和以接收器为中心的调度,从而在不牺牲能源效率的情况下提供了高吞吐量。为了处理事件触发的突发流量,RC-MAC利用WSN的基础数据收集树结构和当前IEEE 802.15.4 RF收发器支持的多通道技术来协助安排媒体访问。通过以接收者为中心的媒体访问调度和分布式信道分配,可以在两个阶段中提高吞吐量。首先,在数据收集树上,接收方能够协调多个发送方的媒体访问,从而减少冲突并实现高吞吐量。其次,不同的接收者在不同的通道中协调其发送者,并且通过允许并行数据收集进一步提高了吞吐量。观察低成本传感器节点上的数据包处理时间,我们设计了一种调度模式,该模式可确保源节点之间的公平性而不会牺牲吞吐量。我们通过测量TinosOS在TelosB节点上的实现以及广泛的ns-2仿真来评估RC-MAC的性能。与基于竞争和基于调度的MAC协议相比,我们表明,以接收者为中心的调度显着提高了高流量负载下的吞吐量和公平性。由于高吞吐量,能源效率也得到提高。

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