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Automated Dynamic Resource Provisioning and Monitoring in Virtualized Large-Scale Datacenter

机译:虚拟化大型数据中心中的自动化动态资源供应和监视

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Infrastructure as a Service (IaaS) is a pay-as-you go based cloud provision model which on demand outsources the physical servers, guest virtual machine (VM) instances, storage resources, and networking connections. This article reports the design and development of our proposed innovative symbiotic simulation based system to support the automated management of IaaS-based distributed virtualized data enter. To make the ideas work in practice, we have implemented an Open Stack based open source cloud computing platform. A smart benchmarking application "Cloud Rapid Experimentation and Analysis Tool (aka CBTool)" is utilized to mark the resource allocation potential of our test cloud system. The real-time benchmarking metrics of cloud are fed to a distributed multi-agent based intelligence middleware layer. To optimally control the dynamic operation of prototype data enter, we predefine some custom policies for VM provisioning and application performance profiling within a versatile cloud modeling and simulation toolkit "CloudSim". Both tools for our prototypes' implementation can scale up to thousands of VMs, therefore, our devised mechanism is highly scalable and flexibly be interpolated at large-scale level. Autonomic characteristics of agents aid in streamlining symbiosis among the simulation system and IaaS cloud in a closed feedback control loop. The practical worth and applicability of the multiagent-based technology lies in the fact that this technique is inherently scalable hence can efficiently be implemented within the complex cloud computing environment. To demonstrate the efficacy of our approach, we have deployed an intelligible lightweight representative scenario in the context of monitoring and provisioning virtual machines within the test-bed. Experimental results indicate notable improvement in the resource provision profile of virtualized data enter on incorporating our proposed strategy.
机译:基础架构即服务(IaaS)是一种按需付费的云供应模型,该模型按需将物理服务器,来宾虚拟机(VM)实例,存储资源和网络连接外包。本文报告了我们提出的创新的基于共生仿真的创新系统的设计和开发,以支持基于IaaS的分布式虚拟数据输入的自动化管理。为了使这些想法付诸实践,我们实现了一个基于Open Stack的开源云计算平台。智能基准测试应用程序“云快速实验和分析工具(aka CBTool)”用于标记我们测试云系统的资源分配潜力。云的实时基准测试指标被馈送到基于分布式多代理的智能中间件层。为了优化控制原型数据输入的动态操作,我们在通用的云建模和仿真工具包“ CloudSim”中预定义了一些用于VM设置和应用程序性能分析的自定义策略。用于我们的原型实现的两个工具都可以扩展到数千个VM,因此,我们设计的机制具有高度的可扩展性,并且可以在大规模级别上灵活地进行插值。代理的自主特性有助于在封闭的反馈控制回路中简化仿真系统与IaaS云之间的共生关系。基于多代理的技术的实际价值和适用性在于该技术具有固有的可扩展性,因此可以在复杂的云计算环境中有效地实现。为了证明我们的方法的有效性,我们在监视和配置测试平台内的虚拟机的上下文中部署了可理解的轻量级代表性方案。实验结果表明,采用我们提出的策略后,虚拟化数据的资源供应配置文件有了显着改善。

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