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Mercury: A modeling, simulation, and optimization framework for data stream-oriented IoT applications

机译:汞:用于数据流定向的IOT应用的建模,仿真和优化框架

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摘要

The Internet of Things is transforming our society by monitoring users and infrastructures' behavior to enable new services that will improve life quality and resource management. These applications require a vast amount of localized information to be processed in real-time so, the deployment of new fog computing infrastructures that bring computing closer to the data sources is a major concern. In this context, we present Mercury, a Modeling, Simulation, and Optimization (M&S&O) framework to analyze the dimensioning and the dynamic operation of real-time fog computing scenarios. Our research proposes a location-aware solution that supports data stream analytics applications including FaaS-based computation offloading. Mercury implements a detailed structural and behavioral simulation model, providing fine-grained simulation outputs, and is described using the Discrete Event System Specification (DEVS) mathematical formalism, helping to validate the model's implementation. Finally, we present a case study using real traces from a driver assistance scenario, offering a detailed comparison with other state-of-the-art simulators.
机译:事情互联网通过监控用户和基础设施的行为来改变我们的社会,以实现将改善生活质量和资源管理的新服务。这些应用程序需要实时处理大量的本地化信息,因此,新的雾计算基础架构的部署,将计算更近置到数据源是一个主要问题。在这种情况下,我们呈现汞,建模,仿真和优化(M&S&O)框架来分析实时雾计算场景的尺寸和动态操作。我们的研究提出了一个位置感知解决方案,支持数据流分析应用程序,包括基于FAAS的计算卸载。汞实施了一种详细的结构和行为仿真模型,提供细粒度的仿真输出,并使用离散事件系统规范(DEVS)数学形式主义来描述,有助于验证模型的实现。最后,我们展示了一种使用Real Trave从驾驶员辅助方案的案例研究,提供与其他最先进的模拟器的详细比较。

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