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Peak shifting water supply method for intelligent water supply pump station
The invention provides an off-peak water supply method for an intelligent water supply pump station, and the method comprises the steps: S1, building a dynamic water consumption load model based on the water consumption record of a water consumption region in a preset period; s2, determining a water consumption prediction thread of each sub water consumption area in the water consumption area based on the water consumption record; s3, based on the dynamic water consumption load model, the water consumption prediction threads of all the water consumption sub-areas and the water storage data of all the reservoirs, determining a water supply planning thread of each water consumption sub-area in a prediction period; s4, based on the water supply planning threads of all the sub water use areas in the prediction period, determining a valve control plan containing the state record of each pipeline valve in the complete pipeline model in the prediction period; s5, executing the valve control plan in the prediction period to obtain an off-peak water supply result; flexible planning of water supply pipelines between a plurality of reservoirs and a plurality of water supply connectors and intelligent control of pipeline valves are achieved, and the peak shifting water supply effect is greatly improved.
本发明提供了一种智慧供水泵站的错峰供水方法,包括:S1:基于用水区域在预设周期内的用水记录,搭建出动态用水负荷模型;S2:基于用水记录确定出用水区域中每个子用水区域的用水预测线程;S3:基于动态用水负荷模型和所有子用水区域的用水预测线程以及所有蓄水池的蓄水数据,确定出每个子用水区域在预测周期内的供水规划线程;S4:基于所有子用水区域在预测周期内的供水规划线程,确定出包含完整管道模型中每个管道阀门在预测周期内的状态记录的阀门控制计划;S5:在预测周期内执行阀门控制计划,获得错峰供水结果;用以实现多个蓄水池和多个供水接口之间的供水管道的灵活规划和管道阀门的智能控制,大大提高了错峰供水的效果。
Peak shifting water supply method for intelligent water supply pump station
The invention provides an off-peak water supply method for an intelligent water supply pump station, and the method comprises the steps: S1, building a dynamic water consumption load model based on the water consumption record of a water consumption region in a preset period; s2, determining a water consumption prediction thread of each sub water consumption area in the water consumption area based on the water consumption record; s3, based on the dynamic water consumption load model, the water consumption prediction threads of all the water consumption sub-areas and the water storage data of all the reservoirs, determining a water supply planning thread of each water consumption sub-area in a prediction period; s4, based on the water supply planning threads of all the sub water use areas in the prediction period, determining a valve control plan containing the state record of each pipeline valve in the complete pipeline model in the prediction period; s5, executing the valve control plan in the prediction period to obtain an off-peak water supply result; flexible planning of water supply pipelines between a plurality of reservoirs and a plurality of water supply connectors and intelligent control of pipeline valves are achieved, and the peak shifting water supply effect is greatly improved.
本发明提供了一种智慧供水泵站的错峰供水方法,包括:S1:基于用水区域在预设周期内的用水记录,搭建出动态用水负荷模型;S2:基于用水记录确定出用水区域中每个子用水区域的用水预测线程;S3:基于动态用水负荷模型和所有子用水区域的用水预测线程以及所有蓄水池的蓄水数据,确定出每个子用水区域在预测周期内的供水规划线程;S4:基于所有子用水区域在预测周期内的供水规划线程,确定出包含完整管道模型中每个管道阀门在预测周期内的状态记录的阀门控制计划;S5:在预测周期内执行阀门控制计划,获得错峰供水结果;用以实现多个蓄水池和多个供水接口之间的供水管道的灵活规划和管道阀门的智能控制,大大提高了错峰供水的效果。
Peak shifting water supply method for intelligent water supply pump station
智慧供水泵站的错峰供水方法
CHEN MI (author) / ZHANG BIN (author) / TANG YONG (author) / LI HONGYIN (author) / ZHAI CHUNHONG (author)
2024-05-03
Patent
Electronic Resource
Chinese
IPC:
G06Q
Datenverarbeitungssysteme oder -verfahren, besonders angepasst an verwaltungstechnische, geschäftliche, finanzielle oder betriebswirtschaftliche Zwecke, sowie an geschäftsbezogene Überwachungs- oder Voraussagezwecke
,
DATA PROCESSING SYSTEMS OR METHODS, SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL, SUPERVISORY OR FORECASTING PURPOSES
/
E03B
Anlagen oder Verfahren zum Gewinnen, Sammeln oder Verteilen von Wasser
,
INSTALLATIONS OR METHODS FOR OBTAINING, COLLECTING, OR DISTRIBUTING WATER
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