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Cloud/Fog Computing System Architecture and Key Technologies for South-North Water Transfer Project Safety

机译:南水北调工程云/雾计算系统架构及关键技术

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In view of the real-time and distributed features of Internet of Things (IoT) safety system in water conservancy engineering, this study proposed a new safety system architecture for water conservancy engineering based on cloud/fog computing and put forward a method of data reliability detection for the false alarm caused by false abnormal data from the bottom sensors. Designed for the South-North Water Transfer Project (SNWTP), the architecture integrated project safety, water quality safety, and human safety. Using IoT devices, fog computing layer was constructed between cloud server and safety detection devices in water conservancy projects. Technologies such as real-time sensing, intelligent processing, and information interconnection were developed. Therefore, accurate forecasting, accurate positioning, and efficient management were implemented as required by safety prevention of the SNWTP, and safety protection of water conservancy projects was effectively improved, and intelligential water conservancy engineering was developed.
机译:针对水利工程中物联网安全系统的实时和分布式特点,提出了一种基于云/雾计算的水利工程安全系统新体系结构,提出了一种数据可靠性方法。检测由底部传感器的错误异常数据导致的错误警报。专为南水北调工程(SNWTP)设计,该架构将工程安全,水质安全和人身安全结合在一起。利用物联网设备,在水利工程中的云服务器和安全检测设备之间构建了雾计算层。开发了诸如实时感测,智能处理和信息互连之类的技术。因此,根据SNWTP的安全预防要求,进行了准确的预测,准确的定位和有效的管理,有效地改善了水利工程的安全性,开发了智能化的水利工程。

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