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AN AGENT-BASED DATA COLLECTION ARCHITECTURE FOR DISTRIBUTED SIMULATIONS

机译:基于Agent的数据收集架构,用于分布式仿真

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This paper presents an agent-based architecture for data collection and output analysis within a distributed simulation. Typically, a distributed model is decomposed into submodels that exchange entities such as system states, transitions, state durations, and objects. These submodels may run on different computers connected through a network. Because each submodel operates in a relatively independent manner, they each have only a partial view of system characteristics. Hence it becomes necessary to provide services that facilitate data collection and analysis within the distributed simulation. The main contribution of this article is to enhance the software support to enable data collection and analysis within the distributed simulation. The framework proposed in this work is integrated within the DEVSJAVA environment, which provides a system-theoretic basis for formulating discrete event simulation models through a collection of objects. The proposed system provides a scalable distributed computing architecture. The operation of the system is illustrated through an example in automated mining. We compare our architecture with a "baseline" methodology in which all submodels report all data to a central database for output analysis. The experimental results show that the proposed architecture can reduce network traffic significantly, provided the data collection agent is able to choose its operational parameters appropriately. The results also show that the system is able to work well with both heavy and light network traffic cases.
机译:本文提出了一种基于代理的体系结构,用于在分布式仿真中进行数据收集和输出分析。通常,将分布式模型分解为子模型,这些子模型交换诸如系统状态,转换,状态持续时间和对象之类的实体。这些子模型可以在通过网络连接的不同计算机上运行。因为每个子模型都以相对独立的方式运行,所以每个子模型仅具有系统特性的部分视图。因此,有必要提供有助于在分布式仿真中进行数据收集和分析的服务。本文的主要贡献是增强了软件支持,从而可以在分布式仿真中进行数据收集和分析。这项工作中提出的框架集成在DEVSJAVA环境中,该环境为通过对象集合制定离散事件仿真模型提供了系统理论基础。所提出的系统提供了可扩展的分布式计算架构。通过自动采矿中的示例说明了系统的操作。我们将我们的架构与“基准”方法进行比较,在该方法中所有子模型将所有数据报告给中央数据库以进行输出分析。实验结果表明,只要数据收集代理能够适当选择其运行参数,该架构就可以显着减少网络流量。结果还表明,该系统能够在繁重的网络流量情况下正常工作。

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