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A secure cloud-edges computing architecture for metagenomics analysis

机译:一种安全云编辑计算架构,用于均衡分析

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摘要

Portable sequencing machines, such as the Oxford Nanopore MinION, are making the genome sequencing ubiquitous. Consequently, metagenomic studies are becoming increasingly popular, yielding important insights into microbial communities covering diverse environments from terrestrial to aquatic ecosystems. Furthermore, the adoption of low-power IoT computing devices represents a feasible way of distributing and managing those machines on the field. However, a key issue is represented by the huge amount of data produced during operations, whose management is actually challenging considering the resources required for an efficient data transfer and processing. In order to deal with such a challenge, this paper put forward a novel architecture based on the coupling of Edge and Cloud computing paradigms. The focus of the paper is the Edge layer, responsible for the dynamic management of the full analysis pipeline of IoT devices producing large datasets like the MinlON ones while adopting proper security mechanisms that handle the authentication of on-field devices and the confidentiality of the transmitted data.
机译:便携式测序机,例如牛津纳米孔沟,使得基因组测序普遍存在。因此,偏见研究变得越来越受欢迎,对微生物社区的重要见解,涵盖从陆地到水生生态系统的多样化环境。此外,低功耗IOT计算设备的采用代表了在字段上分发和管理这些计算机的可行方式。但是,关键问题由运营期间产生的大量数据表示,其管理实际上挑战了考虑有效数据传输和处理所需的资源。为了应对这种挑战,本文基于边缘和云计算范例的耦合提出了一种新颖的架构。纸张的焦点是边缘层,负责机器人设备的全部分析管道的动态管理,这些数据集产生了大型数据集,如Minlon,同时采用处理现场设备的身份验证和传输的机密性的适当安全机制。数据。

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