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Spatial correlation-based collaborative medium access control in wireless sensor networks

机译:无线传感器网络中基于空间相关性的协作媒体访问控制

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Wireless Sensor Networks (WSN) are mainly characterized by dense deployment of sensor nodes which collectively transmit information about sensed events to the sink. Due to the spatial correlation between sensor nodes subject to observed events, it may not be necessary for every sensor node to transmit its data. This paper shows how the spatial correlation can be exploited on the Medium Access Control (MAC) layer. To the best of our knowledge, this is the first effort which exploits spatial correlation in WSN on the MAC layer. A theoretical framework is developed for transmission regulation of sensor nodes under a distortion constraint. It is shown that a sensor node can act as a representative node for several other sensor nodes observing the correlated data. Based on the theoretical framework, a distributed, spatial Correlation-based Collaborative Medium Access Control (CC-MAC) protocol is then designed which has two components: Event MAC (E-MAC) and Network MAC (N-MAC). E-MAC filters out the correlation in sensor records while N-MAC prioritizes the transmission of route-thru packets. Simulation results show that CC-MAC achieves high performance in terms energy, packet drop rate, and latency.
机译:无线传感器网络(WSN)的主要特征是传感器节点的密集部署,这些传感器节点将有关感测事件的信息共同传输到接收器。由于受观察事件影响的传感器节点之间的空间相关性,可能不必每个传感器节点都传输其数据。本文展示了如何在媒体访问控制(MAC)层上利用空间相关性。据我们所知,这是在MAC层中利用WSN中空间相关性的第一项努力。开发了一种理论框架,用于在失真约束下调节传感器节点的传输。示出了传感器节点可以充当观察相关数据的其他几个传感器节点的代表节点。然后,基于理论框架,设计了一种分布式的,基于空间相关性的协作媒体访问控制(CC-MAC)协议,该协议具有两个组件:事件MAC(E-MAC)和网络MAC(N-MAC)。 E-MAC过滤掉传感器记录中的相关性,而N-MAC优先处理直通数据包的传输。仿真结果表明,CC-MAC在能量,丢包率和等待时间方面均达到了高性能。

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