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An Architecture for the Internet of Things and the Use of Big Data Techniques in the Analysis of Carbon Monoxide

机译:用于互联网的架构以及在一氧化碳分析中使用大数据技术

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The use of sensors for the monitoring of a given environment allied to the Internet as a means of communication is popularly known as Internet of Things (IoT). The amount of information generated in this environment has led to an unprecedented increase in data collection. One of the major challenges for its development lies in the storage and the processing of this huge volume of data into acceptable measurement and analysis parameters. This research takes up this challenge by storing and compiling data from different sensors, and by carrying out an exploratory analysis of the information gathered. In this research, sensors that collect data from a specific Sao Paulo's Metropolitan Area (SMA) have been analysed. These sensors are capable of measuring carbon monoxide (CO) levels. This research aims to analyse the main architectures for both batch and stream sensor processing and to use one of them for the construction of a Big Data environment. Big Data tools were used for IoT storage, processing and visualization data. During the experiments, carbon monoxide sensors (MQ7), were analysed. They were connected through a microcontroller unit that supports the Transmission Control Protocol/Internet Protocol (TCP/IP). This project highlights the necessary tools to execute and analyse the data in a dynamic manner. The data collected by the sensors show that the avarage levels of carbon monoxide are well above the international standards set by the World Health Organization (WHO).
机译:使用传感器来监测给互联网的给定环境作为通信手段被称为事物互联网(物联网)。在本环境中产生的信息量导致数据收集的前所未有的增加。其开发的主要挑战之一是存储和处理这一大量数据中的可接受的测量和分析参数。这项研究通过存储和编译来自不同传感器的数据,并通过执行收集的信息的探索性分析来占据这一挑战。在本研究中,分析了从特定的圣保罗大都市区(SMA)收集数据的传感器。这些传感器能够测量一氧化碳(CO)水平。本研究旨在分析批量和流传感器处理的主要架构,并将其中一个用于构建大数据环境。大数据工具用于IOT存储,处理和可视化数据。在实验期间,分析了一氧化碳传感器(MQ7)。它们通过微控制器单元连接,微控制器单元支持传输控制协议/互联网协议(TCP / IP)。该项目突出显示要以动态方式执行和分析数据的必要工具。传感器收集的数据表明,一氧化碳的无氧水平远高于世界卫生组织(世卫组织)所设定的国际标准。

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