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IoT Data Placement in the Fog infrastructure with mobile devices

机译:与移动设备的迷雾基础设施中的物联网数据放置

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With the growth of the worldwide number of IoT devices, finding the right placement and storage of the massive created data is a major challenge. In fact, most IoT applications are time-sensitive applications implemented in critical sectors where any delay can hinder their decision-making, operational execution and decrease their performance. Fog Computing is a better solution to reduce latency by storing and processing real-time data locally on the edge network. Efficient placement strategies are required to map data to distributed infrastructure nodes. Current solutions do not consider the mobility of IoT devices which exists in almost all the real systems. In this paper, we use the random waypoint model to shape the mobility of an IoT system. Furthermore, we formulate our data placement using multiple replicas as a multi-objective linear programming problem aimed at minimizing the overall system latency and the number of data replicas. Then, we propose a greedy heuristic algorithm for IoT devices mobility modeling and data assignments in a feasible time. It uses a refined method to filter possible solutions in order to find the final solution with minimum overall latency while fulfilling producer data storage resource requirements and taking into account data sharing between the distributed consumers in Fog infrastructure. We conducted the experiments with iFogSim simulator respecting two data consistency models for data replicas synchronization. The results show that the proposed data placement strategy improves significantly the overall system latency and the number of data replicas to use.
机译:随着世界各地的IOT设备数量的增长,找到大规模创建数据的正确放置和存储是一项重大挑战。实际上,大多数IOT应用程序是在关键扇区中实现的时敏应用程序,其中任何延迟都会阻碍其决策,操作执行和降低其性能。雾计算是通过在边缘网络上存储和处理实时数据来减少延迟的更好解决方案。将数据映射到分布式基础架构节点需要有效的放置策略。当前的解决方案不考虑几乎所有真实系统中存在的IOT设备的移动性。在本文中,我们使用随机航点模型来塑造IOT系统的移动性。此外,我们使用多个副本制定我们的数据介绍,作为多目标线性编程问题,旨在最大限度地减少整体系统延迟和数据副本的数量。然后,我们提出了一种贪婪的启发式算法,用于IOT设备移动性建模和可行时间中的数据分配。它使用精细的方法来过滤可能的解决方案,以便在满足生产者数据存储资源要求的同时找到最终整体延迟的最终解决方案,并考虑到雾基础架构中分布式消费者之间的数据共享。我们用IFOGSIM模拟器进行了实验,尊重用于数据副本同步的两个数据一致性模型。结果表明,所提出的数据展示策略显着提高了整体系统延迟和要使用的数据副本数量。

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