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基于流式计算的系统优化及分区技术研究 被引量:1
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作者 都娟 《西安铁路职业技术学院学报》 2018年第2期23-27,共5页
理想的流式计算系统,按功能划分,模块功能有重迭,影响了系统的安全性和可靠性。本文提出对理想的流式计算系统进行优化,确定了模块功能。讨论了用于输入的流数据选择计算节点和流数据存储所用到的分区技术。
关键词 流式计算系统 流负载 并行处理 计算节点 系统的扩展性
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Analyzing the service availability of mobile cloud computing systems by fluid-flow approximation 被引量:2
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作者 Hong-wu LV Jun-yu LIN Hui-qiang WANG Guang-sheng FENG Mo ZHOU 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2015年第7期553-567,共15页
Mobile cloud computing (MCC) has become a promising technique to deal with computation- or data-intensive tasks. It overcomes the limited processing power, poor storage capacity, and short battery life of mobile dev... Mobile cloud computing (MCC) has become a promising technique to deal with computation- or data-intensive tasks. It overcomes the limited processing power, poor storage capacity, and short battery life of mobile devices. Providing continuous and on-demand services, MCC argues that the service must be available for users at anytime and anywhere. However, at present, the service availability of MCC is usually measured by some certain metrics of a real-world system, and the results do not have broad representation since different systems have different load levels, different deployments, and many other random factors. Meanwhile, for large-scale and complex types of services in MCC systems, simulation-based methods (such as Monte- Carlo simulation) may be costly and the traditional state-based methods always suffer from the problem of state-space explosion. In this paper, to overcome these shortcomings, fluid-flow approximation, a breakthrough to avoid state-space explosion, is adopted to analyze the service availability of MCC. Four critical metrics, including response time of service, minimum sensing time of devices, minimum number of nodes chosen, and action throughput, are def'med to estimate the availability by solving a group of ordinary differential equations even before the MCC system is fully deployed. Experimental results show that our method costs less time in analyzing the service availability of MCC than the Markov- or simulation-based methods. 展开更多
关键词 Service availability Mobile cloud computing Fluid-flow approximation Ordinary differential equations
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