Development of IoT Control System Prototype for Flood Prevention in Bandung Area

Q3 Decision Sciences
Yessy Permatasari, M Ridwan Firdaus, Hafidh Zuhdi, Hanif Fakhrurroja, Ahmad Musnansyah
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引用次数: 0

Abstract

Bandung is one of the areas with high rainfall that can increase the volume of river water, which, if not handled properly, has the potential for significant floods that can cause material damage and loss of life. With this problem, the authors' rationale for designing a control system for flood prevention. This system develops prototypes using Internet of Things technology and fuzzy logic. For Internet of Things technology, the author uses Arduino, which controls sensors and actuators, while Raspberry Pi is used to process data. In addition, the author uses ultrasonic sensors to measure the water level and a water pump to control the water level. So, if the water level exceeds the specified limit, the pump will move the water to another place, in this prototype, using an aquarium. For fuzzy logic, the criteria used are dry, filled, and full. In addition, this system is equipped with a website-based dashboard used to monitor real-time data from the sensor. The results of this study indicate the system is running well, with an average error of 32.2%. This indicates that the system has been well designed because the errors obtained are feasible to be minor, although there are several influencing factors, such as prototype construction and sensor readings. Thus, this prototype can be applied as a reference for making a real system for flood control.
万隆地区防洪物联网控制系统原型开发
万隆是降雨量大的地区之一,这可能会增加河水的水量,如果处理不当,就有可能发生重大洪水,造成物质损失和生命损失。针对这一问题,提出了设计防洪控制系统的基本原理。该系统利用物联网技术和模糊逻辑开发原型。对于物联网技术,作者使用Arduino来控制传感器和执行器,而使用树莓派来处理数据。此外,作者使用超声波传感器测量水位,并使用水泵控制水位。因此,如果水位超过规定的限制,水泵将把水移动到另一个地方,在这个原型中,使用鱼缸。对于模糊逻辑,使用的标准是干的、填充的和满的。此外,该系统还配备了一个基于网站的仪表板,用于监控传感器的实时数据。研究结果表明,该系统运行良好,平均误差为32.2%。这表明系统设计得很好,因为得到的误差可以很小,尽管有几个影响因素,如原型结构和传感器读数。因此,该原型可作为制作实际防洪系统的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
JOIV International Journal on Informatics Visualization
JOIV International Journal on Informatics Visualization Decision Sciences-Information Systems and Management
CiteScore
1.40
自引率
0.00%
发文量
100
审稿时长
16 weeks
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