Retracted: A DQN-Based Frame Aggregation and Task Offloading Approach for Edge-Enabled IoMT

计算机科学 服务质量 能源消耗 计算机网络 帧(网络) 节点(物理) 吞吐量 人体区域网 可穿戴计算机 GSM演进的增强数据速率 分布式计算 边缘计算 无线 无线传感器网络 嵌入式系统 电信 生物 工程类 结构工程 生态学
作者
Xiaoming Yuan,Zedan Zhang,Chujun Feng,Yejia Cui,Sahil Garg,Georges Kaddoum,Keping Yu
出处
期刊:IEEE Transactions on Network Science and Engineering [Institute of Electrical and Electronics Engineers]
卷期号:10 (3): 1339-1351 被引量:53
标识
DOI:10.1109/tnse.2022.3218313
摘要

The rapid expansion of wearable medical devices and health data of Internet of Medical Things (IoMT) poses new challenges to the high Quality of Service (QoS) of intelligent health care in the foreseeable 6G era. Healthcare applications and services require ultra reliable, ultra low delay and energy consumption data communication and computing. Wireless Body Area Network (WBAN) and Mobile Edge Computing (MEC) technologies empowered IoMT to deal with huge data sensing, processing and transmission in high QoS. However, traditional frame aggregation schemes in WBAN generate too much control frames during data transmission, which leads to high delay and energy consumption and is not flexible enough. In this paper, a Deep Q-learning Network (DQN) based Frame Aggregation and Task Offloading Approach (DQN-FATOA) is proposed. Firstly, different service data were divided into queues with similar QoS requirements. Then, the length of the frame aggregation was selected dynamically by the aggregation node according to the delay, energy consumption, and throughput by DQN. Finally, the number of tasks offloaded was selected due to the current state. Compared with the traditional scheme, the simulation results show that the proposed DQN-FATOA has effectively reduced delay and energy consumption, and improved the throughput and overall utilization of WBAN.
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