返回
Toward A Task Offloading Framework Based on Cyber Digital Twins in Mobile Edge Computing
DOI:10.1109/MWC.020.2200533.png)
摘要
En 中文
In the metaverse, the concept of the digital twin has been expanded from modeling industrial manufacturing to the counterpart of physical objects in cyberspace. The cyber digital twin is updated using real-time data and reasoning to improve decision-making, which imposes a high computational demand on the mobile edge. Mobile edge computing (MEC) provides computing resources for mobile devices to handle complex tasks, addressing the shortcomings of mobile devices in performance. Cyber digital twins with artificial intelligence (AI) capability have great advantages in addressing complex and changing environments. In this article, we propose a cyber digital twin-based mobile edge computing framework, which integrates artificial intelligence into mobile edge networks to enable intelligent resource management. We address the edge computation offloading task through formulating an optimization problem that minimizes the latency of a mobile user via MEC server selection and power allocation. Our solution employs a reinforcement learning-based algorithm, which we demonstrate to be effective. The experimental results show that the cyber digital twin based framework with artificial intelligence capability can further reduce task processing latency and improve the quality of service provided to users.
Keyword:
Performance evaluation
Multi-access edge computing
Quality of service
Mobile handsets
Real-time systems
Digital twins
Resource management
期刊
IF:
11.5
论文数:
2.8K
被引数:
1.3W
机构
引用论文
Dynamic Offloading Strategy for Delay-Sensitive Task in Mobile-Edge Computing Networks移动边缘计算网络中延迟敏感任务的动态分流策略
Joint Admission Control and Resource Allocation in Edge Computing for Internet of Things
IEEE NETWORK
IF6.3
Computation Offloading and Resource Allocation for the Internet of Things in Energy-Constrained MEC-Enabled HetNets
IEEE ACCESS
IF3.6

