首页> 外文会议>IEEE International Conference on Green Computing and Communications;IEEE International Conference on Internet of Things;IEEE International Conference on Cyber, Physical and Social Computing;IEEE International Conference on Smart Data;IEEE Congress on Cybermatics >Toward A Sustainable Cyber-Physical System Architecture for Urban Water Supply System**This work was supported by KLIMAFORSK programme(No. 244147/E10) from Research Council of Norway.
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Toward A Sustainable Cyber-Physical System Architecture for Urban Water Supply System**This work was supported by KLIMAFORSK programme(No. 244147/E10) from Research Council of Norway.

机译:朝着城市供水系统的可持续网络系统架构**这项工作得到了挪威研究委员会的Klimaforsk计划(No.244147 / E10)。

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摘要

The growth of urbanization has induced tremendous difficulties for fundamental resources, environment, and city management. Miscellaneous traditional infrastructures cannot keep up with the increasing requirements of residents. Among them, the urban water supply system (UWSS), as the foothold of all modern life, plays a key point in sustainable city development. To address these challenges, we invited the concepts from Cyber-Physical System (CPS). CPS tangles physical and cyber spaces together on different spatial and temporal scales in order to provide a systematic solution for UWSS. In this paper, we form up a general architecture for UWSS based on CPS concepts. It maps a five-level hierarchical architecture including connection, conversion, cyber, cognition, and configuration. This architecture covers the whole UWSS process, from water source management, treatment to the distribution networks. We designed the working mechanism considering data management, information processing, and knowledge generation and refinement. On top of this architecture, we propose a set of indices to compare and evaluate alternative UWSS by taking into account water supply quantity, quality, and sustainability features. For a case study, we present our experiences in a Norwegian city, named Ålesund. It was admitted to the United Nations Smart City program in 2019, especially for Smart Water design. In our practice, we have deployed related sensors across the local UWSS and corresponding methods for related public services. The preliminary results have shown the feasibility and improvement of UWSS efficiency with the proposed architecture.
机译:城市化的增长对基本资源,环境和城市管理造成了巨大的困难。杂项传统基础设施不能跟上居民的日益增长的要求。其中,城市供水系统(UWSS)作为所有现代生活的立足点,在可持续城市发展中起着一个关键。为了解决这些挑战,我们邀请了来自网络物理系统(CPS)的概念。 CPS将物理和网络空间缠结在不同的空间和时间秤上,以便为UWSS提供系统的解决方案。在本文中,我们基于CPS概念形成了UWSS的一般架构。它映射了一个五级分层体系结构,包括连接,转换,网络,认知和配置。该架构涵盖了整个UWSS过程,从水源管理,处理到分销网络。我们设计考虑数据管理,信息处理和知识生成和改进的工作机制。在此架构之上,我们提出了一系列索引来通过考虑供水量,质量和可持续性特征来比较和评估替代UWSS。为案例研究,我们展示了我们在挪威市的经验,名为Ålesund。它于2019年录取了联合国智能城市计划,特别是对于智能水设计。在我们的实践中,我们在本地UWSS中部署了相关的传感器以及相关公共服务的相应方法。初步结果显示了UWSS效率的可行性和改进,提出了拟议的架构。

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