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Intelligent prediction and distribution system for mountain rural water supply
The invention discloses a mountainous area rural water supply intelligent prediction distribution system, which comprises a main reservoir and a plurality of auxiliary reservoirs, and is characterized in that the main reservoir is a reservoir which is located in an administrative village, is closest to a water source and has the maximum storage capacity, and is marked as a 1 # reservoir; the small reservoirs in the natural villages affiliated to the administrative villages are marked as affiliated reservoirs; a water outlet of the main reservoir is correspondingly communicated with water inlets of the plurality of auxiliary reservoirs through a plurality of water inlet pipelines which are connected in parallel, and each water inlet pipeline is additionally provided with an electric control valve; and a water inlet of the main reservoir is connected with a water source through a water supply pipeline. Flow prediction is realized by using a recurrent neural network model optimized by a particle swarm algorithm, system building is completed by locally utilizing a high-quality water source in a mountainous area, an existing water source well and a reservoir, finally, automatic feeding and disinfection are completed from the water source, flow coordinated distribution is performed, and water supply flow among different villages is automatically adjusted and distributed. The drinking water quality is ensured while a large amount of water resources and electric energy are saved.
本发明公开一种山区农村供水智能预测分配系统,包括一个主蓄水池以及多个附属蓄水池,所述主蓄水池为位于一个行政村内距离水源最近且储存容量最大的蓄水池,记为1#蓄水池;所述行政村附属自然村的小型蓄水池记为附属蓄水池;所述主蓄水池的出水口与多个附属蓄水池的进水口通过多根并联的进水管道对应相通,每根所述进水管道加装电动调节阀;所述主蓄水池的进水口与水源通过供水管路相连接。本发明用经粒子群算法优化的循环神经网络模型实现流量预测,就地利用山区优质水源和现存水源井、蓄水池完成系统搭建,最终从水源处完成自动投料消毒并进行流量协调分配,自动调整分配不同村之间的供水流量,在节省大量水资源和电能的同时保证饮水质量。
Intelligent prediction and distribution system for mountain rural water supply
The invention discloses a mountainous area rural water supply intelligent prediction distribution system, which comprises a main reservoir and a plurality of auxiliary reservoirs, and is characterized in that the main reservoir is a reservoir which is located in an administrative village, is closest to a water source and has the maximum storage capacity, and is marked as a 1 # reservoir; the small reservoirs in the natural villages affiliated to the administrative villages are marked as affiliated reservoirs; a water outlet of the main reservoir is correspondingly communicated with water inlets of the plurality of auxiliary reservoirs through a plurality of water inlet pipelines which are connected in parallel, and each water inlet pipeline is additionally provided with an electric control valve; and a water inlet of the main reservoir is connected with a water source through a water supply pipeline. Flow prediction is realized by using a recurrent neural network model optimized by a particle swarm algorithm, system building is completed by locally utilizing a high-quality water source in a mountainous area, an existing water source well and a reservoir, finally, automatic feeding and disinfection are completed from the water source, flow coordinated distribution is performed, and water supply flow among different villages is automatically adjusted and distributed. The drinking water quality is ensured while a large amount of water resources and electric energy are saved.
本发明公开一种山区农村供水智能预测分配系统,包括一个主蓄水池以及多个附属蓄水池,所述主蓄水池为位于一个行政村内距离水源最近且储存容量最大的蓄水池,记为1#蓄水池;所述行政村附属自然村的小型蓄水池记为附属蓄水池;所述主蓄水池的出水口与多个附属蓄水池的进水口通过多根并联的进水管道对应相通,每根所述进水管道加装电动调节阀;所述主蓄水池的进水口与水源通过供水管路相连接。本发明用经粒子群算法优化的循环神经网络模型实现流量预测,就地利用山区优质水源和现存水源井、蓄水池完成系统搭建,最终从水源处完成自动投料消毒并进行流量协调分配,自动调整分配不同村之间的供水流量,在节省大量水资源和电能的同时保证饮水质量。
Intelligent prediction and distribution system for mountain rural water supply
山区农村供水智能预测分配系统
WANG PEIQI (author) / CHEN XINQIAO (author) / YU KUNRONG (author) / LOU RONGMEI (author) / XIAO SHUYING (author) / GAO YABIN (author) / LU HONGBO (author)
2024-11-29
Patent
Electronic Resource
Chinese
IPC:
E03B
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INSTALLATIONS OR METHODS FOR OBTAINING, COLLECTING, OR DISTRIBUTING WATER
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