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Towards Osmotic Computing: Analyzing Overlay Network Solutions to Optimize the Deployment of Container-Based Microservices in Fog, Edge and IoT Environments

机译:迈向渗透计算:分析覆盖网络解决方案以优化在雾,边缘和物联网环境中基于容器的微服务的部署

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In recent years, the rapid growth of new Cloud technologies acted as an enabling factor for the adoption of microservices based architecture that leverages container virtualization in order to build modular and robust systems. As the number of containers running on hosts increases, it becomes essential to have tools to manage them in a simple, straightforward manner and with a high level of abstraction. Osmotic Computing is an emerging research field that studies the migration, deployment and optimization of microservices from the Cloud to Fog, Edge, and Internet of Things (IoT) environments. However, in order to achieve Osmotic Computing environments, connectivity issues have to be addressed. This paper investigates these connectivity issues leveraging different network overlays. In particular, we analyze the performance of four network overlays that are OVN, Calico, Weave, and Flannel. Our results give a concrete overview in terms of overhead and performances for each proposed overlay solution, helping us to understand which the best overlay solution is. Specifically, we deployed CoAP and FTP microservices which helped us to carry out these benchmarks and collect the results in terms of transfer times.
机译:近年来,新的云技术的迅速发展成为采用基于微服务的架构的促成因素,该架构利用容器虚拟化来构建模块化和健壮的系统。随着在主机上运行的容器数量的增加,拥有以简单,直接的方式以及高度抽象的方式来管理它们的工具就变得至关重要。渗透计算是一个新兴的研究领域,研究微服务从云到雾,边缘和物联网(IoT)环境的迁移,部署和优化。但是,为了实现渗透计算环境,必须解决连接性问题。本文研究了利用不同网络覆盖的这些连通性问题。特别是,我们分析了OVN,Calico,Weave和Flannel这四个网络覆盖的性能。我们的结果针对每种提议的覆盖解决方案在开销和性能方面给出了具体的概述,有助于我们了解最佳的覆盖解决方案。具体来说,我们部署了CoAP和FTP微服务,这些服务帮助我们执行了这些基准测试并收集了传输时间方面的结果。

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