Decentralized Network Topology Design for Task Offloading in Mobile Edge Computing

Fuente: arXiv
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Auteurs principaux: Ma, Ke, Xie, Junfei
Format: Preprint
Publié: 2024
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author Ma, Ke
Xie, Junfei
author_facet Ma, Ke
Xie, Junfei
contents The rise of delay-sensitive yet computing-intensive Internet of Things (IoT) applications poses challenges due to the limited processing power of IoT devices. Mobile Edge Computing (MEC) offers a promising solution to address these challenges by placing computing servers close to end users. Despite extensive research on MEC, optimizing network topology to improve computational efficiency remains underexplored. Recognizing the critical role of network topology, we introduce a novel decentralized network topology design strategy for task offloading (DNTD-TO) that jointly considers topology design and task allocation. Inspired by communication and sensor networks, DNTD-TO efficiently constructs three-layered network structures for task offloading and generates optimal task allocations for these structures. Comparisons with existing topology design methods demonstrate the promising performance of our approach.
format Preprint
id arxiv_https___arxiv_org_abs_2411_07485
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Decentralized Network Topology Design for Task Offloading in Mobile Edge Computing
Ma, Ke
Xie, Junfei
Networking and Internet Architecture
Distributed, Parallel, and Cluster Computing
The rise of delay-sensitive yet computing-intensive Internet of Things (IoT) applications poses challenges due to the limited processing power of IoT devices. Mobile Edge Computing (MEC) offers a promising solution to address these challenges by placing computing servers close to end users. Despite extensive research on MEC, optimizing network topology to improve computational efficiency remains underexplored. Recognizing the critical role of network topology, we introduce a novel decentralized network topology design strategy for task offloading (DNTD-TO) that jointly considers topology design and task allocation. Inspired by communication and sensor networks, DNTD-TO efficiently constructs three-layered network structures for task offloading and generates optimal task allocations for these structures. Comparisons with existing topology design methods demonstrate the promising performance of our approach.
title Decentralized Network Topology Design for Task Offloading in Mobile Edge Computing
topic Networking and Internet Architecture
Distributed, Parallel, and Cluster Computing
url https://arxiv.org/abs/2411.07485