Paduloh , Paduloh
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FLOOD MANAGEMENT SYSTEM USING A SOUND SENSOR ARDUINO BASED Nazwan Putera Prayuda; Aditya Putra Firmansyah; Rafly Septia Sandy; Paduloh , Paduloh
INTERNATIONAL JOURNAL OF SOCIETY REVIEWS Vol. 2 No. 1 (2024): JANUARY
Publisher : Adisam Publisher

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Abstract

Natural disasters are events that arise due to careless human actions. Natural disasters such as floods cause a lot of material or psychological losses. Floods often cause people to lose their homes, livelihoods, and even cause trauma due to the loss of family members. So we must prevent floods from occurring in order to achieve a safe and peaceful life. In this research, a Sound Sensor was used as a detection tool combined with the Arduino Water Level System so that the movement of water flow can be seen, especially in areas that are prone to flooding. The results of this research showed that there was a low scale with a small sound on the red light, then there was a medium scale with a medium sound on the green light, and also a high scale with a large sound on the blue light.
APPLICATION OF AUTOMATIC WATERING SYSTEM BASED ON SOIL MOISTURE SENSOR FOR BONSAI PLANTS Abu Ridho Al-amin; Slamet Nugraha; Rifqi Iman; Paduloh , Paduloh
INTERNATIONAL JOURNAL OF SOCIETY REVIEWS Vol. 2 No. 1 (2024): JANUARY
Publisher : Adisam Publisher

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Bonsai plants, with their distinctive beauty and aesthetic value, have become an attraction for plant lovers in Indonesia. However, proper maintenance, especially watering, can be a challenge for many bonsai owners. In an effort to facilitate more efficient and effective maintenance, this research aims to develop an affordable and accessible soil moisture sensor-based automatic watering system. The research method includes an in-depth literature review of existing soil moisture sensor technologies and the growth characteristics of bonsai plants. Next, we designed and built a prototype watering system that can monitor soil moisture levels and automatically water bonsai plants according to their needs. Initial test results show that the system is able to maintain optimal soil conditions for bonsai plant growth. The system is also equipped with programming capabilities that allow users to customize the watering schedule according to their personal preferences. This research aims to provide a practical solution for bonsai plant lovers in Indonesia who want to maintain proper soil conditions for the growth of their plants, while minimizing the costs required for an automated watering system. This paper is expected to make a positive contribution to the maintenance of bonsai plants and serve as a guide for those interested in developing similar systems in the context of urban agriculture in Indonesia.
USE OF ULTRASONIC SENSOR BY DETECTING VEHICLE SAFE DISTANCE BASED ON ARDUINO UNO Gregorius Advent Trisman Gaurifa; Muhammad Hanif Hidayatulloh; Paduloh , Paduloh
INTERNATIONAL JOURNAL OF SOCIETY REVIEWS Vol. 2 No. 1 (2024): JANUARY
Publisher : Adisam Publisher

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Abstract

With the rapid growth of vehicles, improving road safety has become a necessity. Ultrasonic sensors provide an effective and efficient solution for measuring distance on vehicles, which can be implemented to improve traffic safety. Therefore, we need a system that can detect the distance between vehicles to make it safer. One way to detect a vehicle's safe distance is to use an ultrasonic sensor. An ultrasonic sensor is a tool that can detect a safe distance to a vehicle. This system is designed as an integration between Arduino Uno, ultrasonic sensors, and data processing algorithms. The Arduino Uno program was developed to control ultrasonic sensors, read distance data, and send alerts if potential risks are found. The implementation of the ultrasonic sensor on the Arduino Uno succeeded in proving its ability to detect safe distances between vehicles with high accuracy. By using the right algorithm, the system can provide early warning when a potential risk of collision is detected. Test results show a fast and reliable response from the system This research confirms the effectiveness of Arduino Uno-based ultrasonic sensors in improving traffic safety by detecting safe distances between vehicles.