AMSPM:面向具有动态计算资源的边缘智能驱动型 5G 智慧城市的自适应模型选择和分区机制

IF 3.9 4区 计算机科学 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS
Xin Niu, Xuejiao Cao, Chen Yu, Hai Jin
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引用次数: 0

摘要

借助 5G 网络,边缘智能(EI)不仅能提供分布式、低延迟、高可靠的智能服务,还能实现智慧城市的智能维护和管理。然而,终端设备和边缘服务器不断变化的可用计算资源无法持续保证智能推理的性能。为了保证智慧城市中智能服务的可持续性,我们提出了 5G 智慧城市中 EI 提供服务的自适应模型选择和分区机制(AMSPM),主要包括自适应模型选择(AMS)和自适应模型分区(AMP)。在 AMSPM 中,深度神经网络(DNN)的模型选择和划分被表述为一个优化问题。首先,我们基于边缘设备的计算资源,提出了一种名为 AMS 的递归算法,以推导出满足智能服务延迟需求的合适 DNN 模型。然后,我们根据边缘设备的计算资源对选定的 DNN 模型进行自适应分区。实验结果表明,与最先进的模型选择和分区机制相比,AMSPM 不仅降低了延迟,还提高了计算资源利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
AMSPM: Adaptive Model Selection and Partition Mechanism for Edge Intelligence-driven 5G Smart City with Dynamic Computing Resources

With the help of 5G network, edge intelligence (EI) can not only provide distributed, low-latency, and high-reliable intelligent services, but also enable intelligent maintenance and management of smart city. However, the constantly changing available computing resources of end devices and edge servers cannot continuously guarantee the performance of intelligent inference. In order to guarantee the sustainability of intelligent services in smart city, we propose the Adaptive Model Selection and Partition Mechanism (AMSPM) in 5G smart city where EI provides services, which mainly consists of Adaptive Model Selection (AMS) and Adaptive Model Partition (AMP). In AMSPM, the model selection and partition of deep neural network (DNN) are formulated as an optimization problem. Firstly, we propose a recursive-based algorithm named AMS based on the computing resources of edge devices to derive an appropriate DNN model that satisfies the latency demand of intelligent services. Then, we adaptively partition the selected DNN model according to the computing resources of edge devices. The experimental results demonstrate that, when compared with state-of-the-art model selection and partition mechanisms, AMSPM not only reduces latency but also enhances computing resource utilization.

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来源期刊
ACM Transactions on Sensor Networks
ACM Transactions on Sensor Networks 工程技术-电信学
CiteScore
5.90
自引率
7.30%
发文量
131
审稿时长
6 months
期刊介绍: ACM Transactions on Sensor Networks (TOSN) is a central publication by the ACM in the interdisciplinary area of sensor networks spanning a broad discipline from signal processing, networking and protocols, embedded systems, information management, to distributed algorithms. It covers research contributions that introduce new concepts, techniques, analyses, or architectures, as well as applied contributions that report on development of new tools and systems or experiences and experiments with high-impact, innovative applications. The Transactions places special attention on contributions to systemic approaches to sensor networks as well as fundamental contributions.
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