基于单片机的河流溢流综合控制

Sindak Hutauruk, Libianko Sianturi, Rido Oktovianus Habeahan
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引用次数: 0

摘要

这条河的溢流治理是分阶段、综合实施的。实时检测河水水位,分为正常、警戒、备用、提防四个级别。每一层的河水溢流将自动通过同时工作的三个闸门,然后打开三个同时工作的水泵。从闸门流出的水被引到灌溉区,而抽水的水则流入水库。该河水溢流控制是监测河水水位、开闸闭闸、水泵工作、水库最高水位探测等综合进行的。当所有的闸门都完全打开,所有的水泵都在运转,水库的水位达到最大限时,警报就会响起。这种情况被描述为流量过剩或失控的状态。该控制基于微控制器,因此它具有最小组件的快速响应。该控制系统以微缩形式设计和制造,运行良好,响应时间快。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrated Control of River Overflow Based on Microcontroller
This river overflow control is carried out in stages and in an integrated manner. The river water level is detected in real time with four levels, namely normal, alert, standby, and beware. The overflow of river water at each level will flow automatically through three floodgates that work simultaneously, followed by turning on three water pumps which also work simultaneously. The water flowing from the floodgates is channeled into an irrigation area, while the pumped water is flowed into a reservoir. This river overflow control is carried out in an integrated manner between monitoring the river water level, opening and closing the floodgates, working the pump, and detecting the reservoir maximum level. When all the floodgates are fully open and all pumps are running, and the water level in the reservoir has reached the maximum limit, the alarm will sound. Such conditions are stated in a state of over flow or out of control. This control is based on a microcontroller so that it has a fast response with minimal components. The control system is designed and made in a miniature form that runs well and with a fast response time.
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