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Response times in N-user replicated, centralized, and proximity-based hybrid collaboration architectures

机译:n-user复制,集中式和基于邻近的混合协作体系结构的响应时间

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We evaluate response times, in N-user collaborations, of the popular centralized (client-server) and replicated (peer-to-peer) architectures, and a hybrid architecture in which each replica serves a cluster of nearby clients. Our work consists of definitions of aspects of these architectures that have previously been unspecified but must be resolved for the analysis, a formal evaluation model, and a set of experiments. The experiments are used to define the parameters of and validate the formal analysis. In addition, they compare the performances, under the three architectures, of existing data-centric, logic-centric, and stateless shared components. We show that under realistic conditions, a small number of users, high intra-cluster network delays, and large output processing and transmission costs favor the replicated architecture, large input size favors the centralized architecture, high inter-cluster network delays favor the hybrid architecture, and high input processing and transmission costs, low think times, asymmetric processing powers, and logic-intensive applications favor both the centralized and hybrid architectures. We use our validated formal model to make useful predictions about the performance of the three kinds of architectures under realistic scenarios we could not create in lab experiments.
机译:我们评估流行的集中式(客户端 - 服务器)和复制(对等)架构的N用户合作中的响应时间,以及每个副本为附近客户端的群集提供混合体系结构。我们的工作包括以前未指定的这些架构的方面的定义,但必须解决分析,正式评估模型和一组实验。实验用于定义和验证正式分析的参数。此外,它们还比较了三个体系结构下的性能,以现有的数据为中心,逻辑为中心和无状态共享组件。我们表明,在现实的条件下,少数用户,高集群网络延迟和大输出处理和传输成本有利于复制的架构,大量输入大小有利于集中式架构,高群集网络延迟有利于混合架构,以及高输入处理和传输成本,低思想时间,不对称的处理能力,逻辑密集型应用有利于集中式和混合架构。我们使用我们经过验证的正式模型对实际情况下的三种架构的性能进行了预测,我们无法在实验室实验中创建。

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