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首页> 外文期刊>OASIcs : OpenAccess Series in Informatics >Automatic Resource Scaling for Medical Cyber-Physical Systems Running in Private Cloud Computing Architecture
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Automatic Resource Scaling for Medical Cyber-Physical Systems Running in Private Cloud Computing Architecture

机译:在私有云计算体系结构中运行的医学网络物理系统的自动资源扩展

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摘要

Cloud computing and its related virtualization technologies have become one of dominant trends to deploy software, compute difficult problems, store different types of data, and stream real-time video and audio. Due to its benefits from cost-efficiency and scalability to maintain server solutions, many organizations are migrating their server applications running on physical servers to virtual servers in cloud computing infrastructures. Moreover, cloud computing has enabled mobile and battery-powered devices to operate without strong processing power and large storage capacity. However, it is not trivial to use this trendy technology for medical Cyber Physical Systems (CPSs) which require processing tasks? requests to send instructions to the local actuator within specified deadlines. Since a medical CPS device monitoring a patient?s vital signs may not have a second chance to recover from an erroneous state, achieving cost-efficiency with higher resource utilization in cloud computing may not be the ultimate goal to configure the healthcare IT infrastructure with medical CPS devices. In this paper, we focus on private cloud infrastructures with the fair resource sharing mechanism in order to run medical CPS applications. First, we introduce our medical CPS device model used for designing our cloud infrastructure following the Integrated Clinical Environment (ICE) standard developed by the Medical Device Plug-and-Play (MDPnP) project. Second, we investigate limitations to deploy CPS applications using existing auto-scaling mechanisms. Finally, we propose our novel middleware with a virtual resource sharing mechanism inspired by autonomic computing, and present its performance evaluation results simulated in the OpenStack private cloud.
机译:云计算及其相关的虚拟化技术已成为部署软件,计算难题,存储不同类型的数据以及流传输实时视频和音频的主要趋势之一。由于从维护服务器解决方案的成本效率和可伸缩性中受益,许多组织将其在物理服务器上运行的服务器应用程序迁移到云计算基础架构中的虚拟服务器。此外,云计算使移动和电池供电的设备能够在没有强大处理能力和大存储容量的情况下运行。但是,将这种流行技术用于需要处理任务的医疗网络物理系统(CPS)并非易事吗?请求在指定的期限内向本地执行器发送指令。由于监视患者生命体征的医疗CPS设备可能没有第二次机会从错误状态中恢复过来,因此在云计算中利用更高的资源利用率实现成本效益可能不是将医疗IT基础架构配置为医疗设备的最终目标。 CPS设备。在本文中,我们专注于具有公平资源共享机制的私有云基础架构,以便运行医疗CPS应用程序。首先,我们介绍医疗CPS设备模型,该模型用于遵循由医疗设备即插即用(MDPnP)项目开发的集成临床环境(ICE)标准来设计我们的云基础架构。其次,我们研究使用现有自动缩放机制部署CPS应用程序的局限性。最后,我们提出了一种新颖的中间件,该中间件具有受自主计算启发的虚拟资源共享机制,并提供了在OpenStack私有云中模拟的性能评估结果。

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