Universal Design of Interdisciplinary Cloud Management System to the Implementation of Comprehensive Cases

碩士 === 國立臺北科技大學 === 電機工程系所 === 105 === "Internet of Thing(IoT)" is a new revolution in the field of industry, the spirit of the IoT is to integrate interdisciplinary data for extended applications. Based on the concept of the IoT, this thesis had built a Cloud Management System which adopt...

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Bibliographic Details
Main Authors: Po-Tang Cheng, 鄭伯堂
Other Authors: Li-Hsien Chen
Format: Others
Language:zh-TW
Published: 2017
Online Access:http://ndltd.ncl.edu.tw/handle/khykw9
Description
Summary:碩士 === 國立臺北科技大學 === 電機工程系所 === 105 === "Internet of Thing(IoT)" is a new revolution in the field of industry, the spirit of the IoT is to integrate interdisciplinary data for extended applications. Based on the concept of the IoT, this thesis had built a Cloud Management System which adopts an industrial SCADA called Webaccess as the kernel of the system. The system is capable of data acquisition, data classification, monitoring interface display, data storage, data analysis and etc. With internet connected sensing equipment and auto-transmission technology, the monitered data will be uploaded to the cloud server though the LoRa wireless transmission and TCP/IP which make the data readable and real-time.This thesis includes three integrations: The first one is "interdisciplinary integration." The research gathering professional fields of Electeical Engineering and civil&disaster prevention engineering. Consider the demand of civil&disaster prevention while focuing on the technology of automated monitering. This will make the Cloud Management System more adaptable and more practical for various applications. Second, "Universal Design". This thesis developed a Cloud Management System based on the method of Prototype Development with a general model that can meet kinds of monitering demand by the same interface. Last, "Comprehensive Cases". This thesis developed two application cases as a demonstration: one is "Green Information System", the other is "Slope Disaster Prevention System". This thesis analyzed the correlations between temperature and humidity in different space by collected data from Green Information System. Hope that it can be a reference for quantifying benefits of greening engineering.