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苏州城区活水联控联调系统架构设计--吴志钢,范子武,洪磊,甘琳,谢忱

摘要:

苏州城区活水联控联调系统架构设计--吴志钢,范子武,洪磊,甘琳,谢忱

摘要:

分类:2022年第05期(总第170期)

发布: 2022-10-31 17:22:02

详情描述

  吴志钢,范子武,洪 磊,甘 琳,谢 忱

  (南京水利科学研究院,江苏 南京 210029)

  摘 要:苏州城区河道纵横,闸、泵、堰等水利控制工程众多,目前主要依赖人工调度的模式,统筹兼顾难度较大,难以满足苏州城区水环境高质量目标实现所需的精准化调度要求。分析城区水利工程、监测设备及信息化建设现状,以畅流活水智慧调度应用开发为出发点,以监测数据为驱动,以模型为核心,以远控为手段,依托模型云,构建包括监测设备层、支撑平台层和业务应用层的苏州城区活水联控联调系统平台。平台建成后,利用物联感知系统代替人工观测,实现全智能一键化精准调度代替人工调度,充分发挥清水工程效益,通过精准调度可实现重点河道水体清澈,提升苏州市城区水利综合调度决策能力,完善苏州水利信息化建设布局。

  关键词:水环境;联控联调;系统架构;苏州城区

  Framework design of joint control and regulation system for water circulation in Suzhou urban area

  WU Zhigang,FAN Ziwu,HONG Lei,GAN Lin,XIE Chen

  (Nanjing Hydralulic Research Institute,Nanjing 210029,China)

  Abstract:There are many cross rivers in Suzhou urban area, with hydraulic structures such as gates, pumps and weirs. At present, these structures mainly rely on manual scheduling, which is difficult to coordinate and meet the requirements to achieve the goal of high-quality water environment. This paper analyzes the current situation of urban water from hydraulic structures, monitoring equipment and informatization. The development of intelligent scheduling application for water circulation is taken as the starting point, with monitoring data as the driver. Modeling is seen as the core to support remote control, relying on the cloud model. A joint control and regulation system for water circulation in Suzhou urban area is developed, including monitoring equipment layer, support platform layer and business application layer. The platform applies physical sensing system instead of manual observation to realize intelligent scheduling instead of manual scheduling. With the support of this system, benefits of water restoration projects are maximized, which can achieve clear water bodies in key rivers through precision scheduling, promote the comprehensive scheduling and decision-making capacity of water resources institutions, and improve the planning of water resources informatization in Suzhou.

  Key words:water environment;joint control and regulation;system framework;Suzhou urban area

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版权所有:水利部南京水利水文自动化研究所     苏ICP备05086125号     中企动力  南京