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An improved fast transform algorithm based on adaptive hybrid channel allocation in TSCH networks

机译:基于TSCH网络自适应混合信道分配的改进的快速变换算法

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Time Slotted Channel Hopping (TSCH) is one of the five access behavior technologies defined in the IEEE 802.15.4e standard. Research shows that the wireless sensor network with single dynamic and static channel allocation in TSCH mode has higher performance. The clogging rate results in unnecessary energy waste. Therefore, this paper proposes an adaptive hybrid channel allocation strategy (AHCA) to measure the link quality change of wireless sensor networks in TSCH mode. The strategy estimates the part of the channel quality and determines whether the node wants to transmit on this channel and the optimal channel for node information transmission. According to the change of the amount of information transmitted, the hybrid channel allocation scheme of the dynamic and static channel ratio is adaptively adjusted to reduce the energy consumption of the information transmission process. This article performs experimental simulation on Contiki-NG. The experimental results show that the proposed scheme has shorter transmission time and lower congestion rate than the single dynamic static channel allocation wireless sensor network. The more reasonable and effective measurement, analysis and use of channel resources can fundamentally increase the amount of information transfer in wireless sensor networks per unit time, and thus extend the lifetime of wireless sensor networks.
机译:时隙信道跳跃(TSCH)是IEEE 802.15.4E标准中定义的五种访问行为技术之一。研究表明,TSCH模式下具有单动态和静态信道分配的无线传感器网络具有更高的性能。堵塞率导致不必要的能量浪费。因此,本文提出了一种自适应混合信道分配策略(AHCA)来测量TSCH模式中无线传感器网络的链路质量变化。该策略估计信道质量的一部分,并确定节点是否想要在该信道上发送和用于节点信息传输的最佳信道。根据传输的信息量的变化,自适应地调整动态和静态信道比的混合信道分配方案以降低信息传输过程的能量消耗。本文对Contiki-NG进行了实验模拟。实验结果表明,该方案具有比单动态静态信道分配无线传感器网络更短的传输时间和更低的拥塞率。信道资源的更合理和有效的测量,分析和使用可以从根本上增加每单位时间的无线传感器网络中的信息传输量,从而延长无线传感器网络的寿命。

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