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Load-Adaptive Practical Multi-Channel Communications in Wireless Sensor Networks

机译:无线传感器网络中的负载自适应实用多通道通信

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In recent years, a significant number of sensor node prototypes have been designed that provide communications in multiple channels. This multi-channel feature can be effectively exploited to increase the overall capacity and performance of wireless sensor networks (WSNs). In this paper, we present a multi-channel communications system for WSNs that is referred to as load-adaptive practical multi-channel communications (LPMC). LPMC estimates the active load of a channel at the sink since it has a more comprehensive view of the network behavior, and dynamically adds or removes channels based on the estimated load. LPMC updates the routing path to balance the loads of the channels. The nodes in a path use the same channel; therefore, they do not need to switch channels to receive or forward packets. LPMC has been evaluated through extensive simulations, and the results demonstrate that it can effectively increase the delivery ratio, network throughput, and channel utilization, and that it can decrease the end-to-end delay and energy consumption.
机译:近年来,已经设计了许多传感器节点原型,它们提供了多个通道的通信。可以有效利用此多通道功能来增加无线传感器网络(WSN)的整体容量和性能。在本文中,我们提出了一种用于WSN的多信道通信系统,称为负载自适应实际多信道通信(LPMC)。 LPMC可以对接收器上的通道的活动负载进行估计,因为它可以更全面地了解网络行为,并可以根据估计的负载动态添加或删除通道。 LPMC更新路由路径以平衡通道的负载。路径中的节点使用相同的通道。因此,它们不需要切换通道来接收或转发数据包。 LPMC已通过广泛的仿真进行了评估,结果表明它可以有效地提高传输率,网络吞吐量和信道利用率,并且可以减少端到端的延迟和能耗。

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