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Robust orchestration of concurrent application workflows in mobile device clouds

机译:移动设备云中并发应用程序工作流程的强大编排

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A hybrid mobile/fixed device cloud that harnesses sensing, computing, communication, and storage capabilities of mobile and fixed devices in the field as well as those of computing and storage servers in remote datacenters is envisioned. Mobile device clouds can be harnessed to enable innovative pervasive applications that rely on real-time, in-situ processing of sensor data collected in the field. To support concurrent mobile applications on the device cloud, a robust distributed computing framework, called Maestro, is proposed. The key components of Maestro are (i) a task scheduling mechanism that employs controlled task replication in addition to task reallocation for robustness and (ii) Dedup for task deduplication among concurrent pervasive workflows. An architecture-based solution that relies on task categorization and authorized access to the categories of tasks is proposed for different levels of trust. Experimental evaluation through prototype testbed of Android- and Linux-based mobile devices as well as simulations is performed to demonstrate Maestro's capabilities. (C) 2018 Elsevier Inc. All rights reserved.
机译:设想了一种混合的移动/固定设备云,可以利用现场移动和固定设备以及远程数据中心的计算和存储服务器的传感,计算,通信和存储功能。可以利用移动设备云来实现创新的无处不在的应用程序,这些应用程序依赖实时,现场处理现场收集的传感器数据。为了支持设备云上的并发移动应用程序,提出了一种健壮的分布式计算框架,称为Maestro。 Maestro的关键组件是(i)一种任务调度机制,除了可进行任务重新分配外,还采用受控任务复制以增强鲁棒性;(ii)Dedup用于并发的普遍工作流之间的重复数据删除。针对不同级别的信任,提出了一种基于架构的解决方案,该解决方案依赖于任务分类和对任务类别的授权访问。通过基于Android和Linux的移动设备的原型测试台进行实验评估以及进行仿真,以证明Maestro的功能。 (C)2018 Elsevier Inc.保留所有权利。

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