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APRON: an Architecture for Adaptive Task Planning of Internet of Things in Challenged Edge Networks

机译:APRON:挑战边缘网络中的物联网自适应任务规划架构

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Recently, the growth of Internet of Things (IoT) devices combined with edge computing opened many opportunities for several novel applications. Typical examples are Unmanned Aerial Vehicles (UAV) that are deployed for photogrammetry, surveillance, disaster rapid response and environmental monitoring. A common challenge across all these networked applications is the ability to provide a persistent service - a service able to continuously maintain a high level of performance - responding to events that may change the state of the network, e.g., nodes or link failures. To cope with this challenge, in this paper we propose APRON, an edge cloud-assisted architecture for distributed and adaptive task planning management in a network of IoT devices, e.g., drones. APRON uses a novel planning strategy that, leveraging a Jackson's network model, supports monitoring and control operations while the states of the (edge or cloud) network evolve. By using APRON, edge computing application programmers can design and implement a wide range of IoT task management policies leveraging different protection methodologies across several failure models.
机译:最近,物联网(IoT)设备与边缘计算相结合的发展为几种新颖的应用程序打开了许多机会。典型示例是部署用于摄影测量,监视,灾难快速响应和环境监视的无人机。所有这些联网应用程序之间的共同挑战是提供持久服务的能力-一种能够连续保持高水平性能的服务-对可能更改网络状态的事件(例如,节点或链路故障)做出响应。为了应对这一挑战,在本文中,我们提出了APRON,这是一种边缘云辅助架构,用于IoT设备(例如无人机)网络中的分布式和自适应任务计划管理。 APRON使用一种新颖的计划策略,该策略利用杰克逊(Jackson)的网络模型,在(边缘或云)网络的状态发展时支持监视和控制操作。通过使用APRON,边缘计算应用程序程序员可以设计和实施各种物联网任务管理策略,这些策略利用跨多个故障模型的不同保护方法。

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