计算机科学
在飞行中
物联网
计算机网络
嵌入式系统
操作系统
作者
Alakesh Kalita,Mohan Gurusamy
标识
DOI:10.1109/tii.2024.3385117
摘要
The IPv6 over time-slotted channel hopping mode of IEEE 802.15.4e (6TiSCH) wireless protocol stack is released to offer high-throughput, low and bounded latency, energy efficient, and reliable communication in industrial Internet of Things (IoT). However, scheduling communication cell among the nodes for exchanging sensory data is not trivial in 6TiSCH networks when the network traffic is highly dynamic and unpredictable. The existing autonomous scheduling schemes suffer from static allocation, high end-to-end latency, and high energy consumption. To address the abovementioned problems, in this work, we propose on-the-fly autonomous slot allocation (OASA) scheme to schedule slots for adaptive traffic in 6TiSCH networks autonomously and immediately. OASA also enables a low radio-duty-cycle of the nodes when network traffic is less, which is not considered by any existing adaptive autonomous schedulers. To validate the effectiveness of OASA, we implemented it on Contiki-NG and performed testbed experiments on FIT IoT-LAB. The testbed experiment results demonstrate the effectiveness of OASA in terms of latency, packet delivery ratio, and energy consumption compared to the existing autonomous scheduling schemes.
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