Contention-Aware Microservice Deployment in Collaborative Mobile Edge Networks

Fuente: arXiv
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Main Authors: Ge, Xinlei, Li, Yang, Zhang, Xing, Sun, Yukun, Zhao, Yunji
Format: Preprint
Published: 2024
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author Ge, Xinlei
Li, Yang
Zhang, Xing
Sun, Yukun
Zhao, Yunji
author_facet Ge, Xinlei
Li, Yang
Zhang, Xing
Sun, Yukun
Zhao, Yunji
contents As an emerging computing paradigm, mobile edge computing (MEC) provides processing capabilities at the network edge, aiming to reduce latency and improve user experience. Meanwhile, the advancement of containerization technology facilitates the deployment of microservice-based applications via edge node collaboration, ensuring highly efficient service delivery. However, existing research overlooks the resource contention among microservices in MEC. This neglect potentially results in inadequate resources for microservices constituting latency-sensitive applications, leading to increased response time and ultimately compromising quality of service (QoS). To solve this problem, we propose the Contention-Aware Multi-Application Microservice Deployment (CAMD) algorithm for collaborative MEC, balancing rapid response for applications with low-latency requirements and overall processing efficiency. The CAMD algorithm decomposes the overall deployment problem into manageable sub-problems, each focusing on a single microservice, then employs a heuristic approach to optimize these sub-problems, and ultimately arrives at an optimized deployment scheme through an iterative process. Finally, the superiority of the proposed algorithm is evidenced through intensive experiments and comparison with baseline algorithms.
format Preprint
id arxiv_https___arxiv_org_abs_2412_20151
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Contention-Aware Microservice Deployment in Collaborative Mobile Edge Networks
Ge, Xinlei
Li, Yang
Zhang, Xing
Sun, Yukun
Zhao, Yunji
Networking and Internet Architecture
Distributed, Parallel, and Cluster Computing
As an emerging computing paradigm, mobile edge computing (MEC) provides processing capabilities at the network edge, aiming to reduce latency and improve user experience. Meanwhile, the advancement of containerization technology facilitates the deployment of microservice-based applications via edge node collaboration, ensuring highly efficient service delivery. However, existing research overlooks the resource contention among microservices in MEC. This neglect potentially results in inadequate resources for microservices constituting latency-sensitive applications, leading to increased response time and ultimately compromising quality of service (QoS). To solve this problem, we propose the Contention-Aware Multi-Application Microservice Deployment (CAMD) algorithm for collaborative MEC, balancing rapid response for applications with low-latency requirements and overall processing efficiency. The CAMD algorithm decomposes the overall deployment problem into manageable sub-problems, each focusing on a single microservice, then employs a heuristic approach to optimize these sub-problems, and ultimately arrives at an optimized deployment scheme through an iterative process. Finally, the superiority of the proposed algorithm is evidenced through intensive experiments and comparison with baseline algorithms.
title Contention-Aware Microservice Deployment in Collaborative Mobile Edge Networks
topic Networking and Internet Architecture
Distributed, Parallel, and Cluster Computing
url https://arxiv.org/abs/2412.20151