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Throughput improvement by disruption-suppressed channel switching in multi-channel ad-hoc networks

机译:通过多通道自组织网络中受干扰抑制的通道切换来提高吞吐量

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As Internet of Things (IoT) and smart devices are becoming widespread, expectations for large-scale ad-hoc networks are increasing. To accommodate a large number of nodes, ad-hoc networks should use multiple channels. Thus, dynamic channel switching methods in multi-channel ad-hoc networks have been investigated to control congestion of the channel. However, such channel switching has a considerable impact on the routing layer. Channel switching causes link failure, and routing protocols are forced to recalculate the route related to channel switching nodes. As a result, end-to-end communications may be disrupted during route recalculations. In this paper, we propose a channel-switching scheme which mitigates channel congestion for throughput improvement while suppressing the end-to-end communication disruption. The proposed scheme properly classifies nodes according to whether they are allowed to switch channels on the basis of the current route by which nodes with multiple radio interfaces are connected. Selecting nodes to switch their channel for mitigating congestion can suppress the communication disruption. Our simulation results showed that our proposed scheme achieved 1.8 times throughput by mitigating congestion compared with the initial state at which nodes randomly select the channel. It was also similar throughput to a centralized scheme which dedicate to mitigate congestion. Besides, proposed scheme produced half the number of communication disruptions owing to the proper selection of nodes.
机译:随着物联网(IoT)和智能设备的广泛普及,对大型自组织网络的期望也越来越高。为了容纳大量节点,自组织网络应使用多个通道。因此,已经研究了多信道自组织网络中的动态信道切换方法以控制信道的拥塞。但是,这种信道切换对路由层有相当大的影响。通道切换导致链路故障,并且路由协议被迫重新计算与通道切换节点有关的路由。结果,在路由重新计算期间可能会中断端到端通信。在本文中,我们提出了一种信道切换方案,该方案可缓解信道拥塞以提高吞吐量,同时抑制端到端通信中断。所提出的方案根据节点是否被允许基于当前路由来适当地对节点进行分类,所述当前路由连接了具有多个无线电接口的节点。选择节点切换其信道以缓解拥塞可以抑制通信中断。仿真结果表明,与节点随机选择信道的初始状态相比,我们提出的方案通过缓解拥塞达到了1.8倍的吞吐量。它的吞吐量与集中式方案相似,专用于减轻拥塞。此外,由于节点的正确选择,所提出的方案产生了一半的通信中断。

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