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首页> 外文期刊>SIAM journal on applied dynamical systems >MongoDB-Based Repository Design for IoT-Generated RFID/Sensor Big Data
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MongoDB-Based Repository Design for IoT-Generated RFID/Sensor Big Data

机译:基于MongoDB的存储库设计,用于IOT生成的RFID /传感器大数据

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摘要

Internet of Things (IoT)-generated data are characterized by its continuous generation, large amount, and unstructured format. The existing relational database technologies are inadequate to handle such IoT-generated data due to the limited processing speed and the significant storage-expansion cost. Thus, big data processing technologies, which are normally based on distributed file systems, distributed database management, and parallel processing technologies, have arisen as a core technology to implement IoT-generated data repositories. In this paper, we propose a sensor-integrated radio frequency identification (RFID) data repository-implementation model using MongoDB, the most popular big data-savvy document-oriented database system now. First, we devise a data repository schema that can effectively integrate and store the heterogeneous IoT data sources, such as RFID, sensor, and GPS, by extending the event data types in electronic product code information services standard, a de facto standard for the information exchange services for RFID-based traceability. Second, we propose an effective shard key to maximize query speed and uniform data distribution over data servers. Last, through a series of experiments measuring query speed and the level of data distribution, we show that the proposed design strategy, which is based on horizontal data partitioning and a compound shard key, is effective and efficient for the IoT-generated RFID/sensor big data.
机译:物联网(物联网)的数据的特点是其持续一代,大量和非结构化格式。现有的关系数据库技术不充分,无法由于有限的处理速度和显着的存储扩展成本而处理此类IOT生成的数据。因此,通常基于分布式文件系统,分布式数据库管理和并行处理技术的大数据处理技术已经作为实现IOT生成的数据存储库的核心技术。在本文中,我们提出了一种使用MongoDB的传感器集成的射频识别(RFID)数据存储库实现模型,现在是最受欢迎的大数据救导文档的数据库系统。首先,我们设计了一种数据存储库模式,可以通过在电子产品代码信息服务标准中扩展到信息的事实标准基于RFID的可追溯性的交换服务。其次,我们提出了一个有效的分片键,以最大限度地通过数据服务器来最大化查询速度和统一数据分布。最后,通过一系列实验测量查询速度和数据分布的水平,我们表明所提出的设计策略,基于水平数据分区和复合碎片键,对物联网生成的RFID /传感器是有效和有效的大数据。

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