使用OpenStack设计一个小规模的、抗故障的IaaS云

IF 12.3 Q1 COMPUTER SCIENCE, INFORMATION SYSTEMS Applied Computing and Informatics Pub Date : 2021-09-30 DOI:10.1108/aci-04-2021-0094
Samuel Heuchert, B. Rimal, M. Reisslein, Yong Wang
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引用次数: 3

摘要

主要的公共云提供商,如AWS、Azure或谷歌,为基础设施即服务(IaaS)、平台即服务(PaaS)和软件即服务(SaaS)提供无缝体验。随着公共云广泛使用的出现,管理员必须能够有一种可靠的方法来提供公共云在较小规模(例如私有云)上提供的无缝体验。当需要小型部署或私有云时,OpenStack可以在不增加成本或牺牲数据控制的情况下满足目标。设计/方法/方法为了演示这些在IaaS和PaaS中实现弹性和弹性的目标,作者使用OpenStack及其核心服务Nova、Swift、Cinder、Neutron、Keystone、Horizon和Glance在五节点部署上设计了一个私有分布式系统云平台。通过演示动态添加IaaS节点,将部署推到其物理和逻辑极限,并最终使部署崩溃,本文展示了PackStack实用程序如何促进提供弹性和弹性的基于openstack的IaaS平台,如果部署保持在指定的边界内,该平台可以用于生产。原创性/价值作者采用了多节点功能的PackStack实用程序,支持一体化OpenStack构建,以真正展示小规模IaaS中的弹性、弹性和可伸缩性。一体化部署通常用于概念验证部署,并且不容易在生产中跨多个节点进行扩展。作者证明,将PackStack与多节点设计相结合适用于小规模的生产IaaS和PaaS部署。
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Design of a small-scale and failure-resistant IaaS cloud using OpenStack
PurposeMajor public cloud providers, such as AWS, Azure or Google, offer seamless experiences for infrastructure as a service (IaaS), platform as a service (PaaS) and software as a service (SaaS). With the emergence of the public cloud's vast usage, administrators must be able to have a reliable method to provide the seamless experience that a public cloud offers on a smaller scale, such as a private cloud. When a smaller deployment or a private cloud is needed, OpenStack can meet the goals without increasing cost or sacrificing data control.Design/methodology/approachTo demonstrate these enablement goals of resiliency and elasticity in IaaS and PaaS, the authors design a private distributed system cloud platform using OpenStack and its core services of Nova, Swift, Cinder, Neutron, Keystone, Horizon and Glance on a five-node deployment.FindingsThrough the demonstration of dynamically adding an IaaS node, pushing the deployment to its physical and logical limits, and eventually crashing the deployment, this paper shows how the PackStack utility facilitates the provisioning of an elastic and resilient OpenStack-based IaaS platform that can be used in production if the deployment is kept within designated boundaries.Originality/valueThe authors adopt the multinode-capable PackStack utility in favor of an all-in-one OpenStack build for a true demonstration of resiliency, elasticity and scalability in a small-scale IaaS. An all-in-one deployment is generally used for proof-of-concept deployments and is not easily scaled in production across multiple nodes. The authors demonstrate that combining PackStack with the multi-node design is suitable for smaller-scale production IaaS and PaaS deployments.
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来源期刊
Applied Computing and Informatics
Applied Computing and Informatics Computer Science-Information Systems
CiteScore
12.20
自引率
0.00%
发文量
0
审稿时长
39 weeks
期刊介绍: Applied Computing and Informatics aims to be timely in disseminating leading-edge knowledge to researchers, practitioners and academics whose interest is in the latest developments in applied computing and information systems concepts, strategies, practices, tools and technologies. In particular, the journal encourages research studies that have significant contributions to make to the continuous development and improvement of IT practices in the Kingdom of Saudi Arabia and other countries. By doing so, the journal attempts to bridge the gap between the academic and industrial community, and therefore, welcomes theoretically grounded, methodologically sound research studies that address various IT-related problems and innovations of an applied nature. The journal will serve as a forum for practitioners, researchers, managers and IT policy makers to share their knowledge and experience in the design, development, implementation, management and evaluation of various IT applications. Contributions may deal with, but are not limited to: • Internet and E-Commerce Architecture, Infrastructure, Models, Deployment Strategies and Methodologies. • E-Business and E-Government Adoption. • Mobile Commerce and their Applications. • Applied Telecommunication Networks. • Software Engineering Approaches, Methodologies, Techniques, and Tools. • Applied Data Mining and Warehousing. • Information Strategic Planning and Recourse Management. • Applied Wireless Computing. • Enterprise Resource Planning Systems. • IT Education. • Societal, Cultural, and Ethical Issues of IT. • Policy, Legal and Global Issues of IT. • Enterprise Database Technology.
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