TIMBER: On supporting data pipelines in Mobile Cloud Environments

Fuente: arXiv
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Autori principali: Tomaras, Dimitrios, Tsenos, Michail, Kalogeraki, Vana, Gunopulos, Dimitrios
Natura: Preprint
Pubblicazione: 2024
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author Tomaras, Dimitrios
Tsenos, Michail
Kalogeraki, Vana
Gunopulos, Dimitrios
author_facet Tomaras, Dimitrios
Tsenos, Michail
Kalogeraki, Vana
Gunopulos, Dimitrios
contents The radical advances in mobile computing, the IoT technological evolution along with cyberphysical components (e.g., sensors, actuators, control centers) have led to the development of smart city applications that generate raw or pre-processed data, enabling workflows involving the city to better sense the urban environment and support citizens' everyday lives. Recently, a new era of Mobile Edge Cloud (MEC) infrastructures has emerged to support smart city applications that aim to address the challenges raised due to the spatio-temporal dynamics of the urban crowd as well as bring scalability and on-demand computing capacity to urban system applications for timely response. In these, resource capabilities are distributed at the edge of the network and in close proximity to end-users, making it possible to perform computation and data processing at the network edge. However, there are important challenges related to real-time execution, not only due to the highly dynamic and transient crowd, the bursty and highly unpredictable amount of requests but also due to the resource constraints imposed by the Mobile Edge Cloud environment. In this paper, we present TIMBER, our framework for efficiently supporting mobile daTa processing pIpelines in MoBile cloud EnviRonments that effectively addresses the aforementioned challenges. Our detailed experimental results illustrate that our approach can reduce the operating costs by 66.245% on average and achieve up to 96.4% similar throughput performance for agnostic workloads.
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id arxiv_https___arxiv_org_abs_2410_18106
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle TIMBER: On supporting data pipelines in Mobile Cloud Environments
Tomaras, Dimitrios
Tsenos, Michail
Kalogeraki, Vana
Gunopulos, Dimitrios
Distributed, Parallel, and Cluster Computing
The radical advances in mobile computing, the IoT technological evolution along with cyberphysical components (e.g., sensors, actuators, control centers) have led to the development of smart city applications that generate raw or pre-processed data, enabling workflows involving the city to better sense the urban environment and support citizens' everyday lives. Recently, a new era of Mobile Edge Cloud (MEC) infrastructures has emerged to support smart city applications that aim to address the challenges raised due to the spatio-temporal dynamics of the urban crowd as well as bring scalability and on-demand computing capacity to urban system applications for timely response. In these, resource capabilities are distributed at the edge of the network and in close proximity to end-users, making it possible to perform computation and data processing at the network edge. However, there are important challenges related to real-time execution, not only due to the highly dynamic and transient crowd, the bursty and highly unpredictable amount of requests but also due to the resource constraints imposed by the Mobile Edge Cloud environment. In this paper, we present TIMBER, our framework for efficiently supporting mobile daTa processing pIpelines in MoBile cloud EnviRonments that effectively addresses the aforementioned challenges. Our detailed experimental results illustrate that our approach can reduce the operating costs by 66.245% on average and achieve up to 96.4% similar throughput performance for agnostic workloads.
title TIMBER: On supporting data pipelines in Mobile Cloud Environments
topic Distributed, Parallel, and Cluster Computing
url https://arxiv.org/abs/2410.18106