基于arduino的闸门自检传感器控制系统设计

Balqis Yafis, R. ;
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引用次数: 1

摘要

使用基于arduino的闸门旨在解决洪水问题。本研究的目的是建立一个可以监测水位和控制水闸的系统。超声波传感器用于测量水位,因为水位成为打开和关闭水闸的指示器。超声波传感器安装在大坝上,测量水面和传感器发射器之间的距离。水位测量的结果被用来控制闸门。传感器测量结果并不总是有效的,考虑到传感器的年龄和大坝周围的地形是相当具有挑战性的。在本研究中引入了自检传感器特征,作为克服系统检测故障的一种方法,其中超声波传感器可以仅依靠其邻居进行自我监测。一般来说,这个过程分为四个阶段,从读取传感器的阶段开始,从Arduino发送和接收数据的阶段开始,到检测传感器的值的阶段,到显示传感器的值的阶段。在传感器值显示阶段,有正常、waspada、siaga和bahaya四种水位状态。根据测试结果,将自检传感器集成到系统中可以实现更高效的基于arduino的水闸控制系统,并且可以检测到传感器损坏引起的故障
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing Arduino-Based Sluice Control System With Self-Check Sensor Feature
The use of Arduino-Based floodgates aims to address the issue of flooding. The goal of this research was to create a system that could monitor water levels and control floodgatesUltrasonic sensor was used to measure water level, as the water level becomes the indicator to open and close the floodgates. The ultrasonic sensor is mounted on the dam and measures the distance between the water’s surface and the sensor transmitter. The results of the measurement of the water level are used to control the floodgates. Sensor measurement results are not always valid, given the age of the sensor and the terrain around the dam is quite challenging. The self-check sensor feature is introduced in this study as a way to overcome detection faults in the system, where ultrasonic sensors can perform self-monitoring by relying solely on their neighbours. In general, the process is carried out in four stages, starting from the stage of reading the sensor, the stage transmitting and receiving data from the Arduino, the stage of detecting sensor’s value, the stage of displaying the sensor values. At the stage of displaying the sensor value, there are four water level conditions, normal, waspada, siaga and bahaya. According to the test results, incorporating self-check sensors into the system enables for more efficient Arduino-based sluice control systems, as well as the possibility of detecting malfunctions caused by sensor damage
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