• Title/Summary/Keyword: Arduino system

Search Result 397, Processing Time 0.025 seconds

Development of experimental water level measuring device using an Arduino and an ultrasonic sensor (아두이노와 초음파 센서를 이용한 실험용 수위 측정 장치 개발)

  • Yoo, Moonsung
    • The Journal of the Institute of Internet, Broadcasting and Communication
    • /
    • v.18 no.4
    • /
    • pp.143-147
    • /
    • 2018
  • Water levels are measured in various fields such as sewage treatment plants, water treatment plants, rivers, dams, factory storages' tanks. Ultrasonic instruments for water level measurement are expensive and are used for industrial field. Rapid advances in electronics have made it possible to build a wide variety of measurement, monitoring and control functions at low cost. This study was started to make ultrasonic level measurement system at low price. The system was constructed with an Arduino, an ultrasonic sensor and a temperature sensor for use in the experiment. The ultrasonic sensor measures the time from the sensor to the liquid surface. The temperature sensor measures the atmospheric temperature and improves the accuracy of the ultrasonic distance measurement by correcting the sound speed. Arduino controls measurements and calculates the water level. All components of the system are assembled into a device holder. Experiments with this system show that the water level measured by the system is very close to the actual value. This system is also inexpensive and easy to install and maintain, making it suitable for laboratory use.

Smart Solar Control System: Based on the Low-Power Control of Arduino Board (지능형 태양광 전력 관리 시스템 (아두이노 저전력 제어를 중심으로))

  • Kwon, Oh-Sung
    • Journal of The Korean Association of Information Education
    • /
    • v.23 no.5
    • /
    • pp.461-467
    • /
    • 2019
  • As the convergence solutions become more common, the use of Arduino and Raspberry Pi boards has been increasing. These control boards has to be executed under power blackout. In this environment, we take advantage of solar power system to overcome the power out. In this paper, we poposed a effficient power control strategy. Our experimental device is a DSLR shooting device executed based a predesigned interval time. The control module of our experimental device is the compound system of Raspberry Pi and Arduino boards. Arduino board send the force signals to wake up Raspberry Pi. We developed a new control strategy algorithm for the efficient use of solar power energy. In this paper, we mesured the efficiency of solar enery consuming of our system. We programmed a control system to send DSLR shooting signals. In experimentals, we ensured a stable consuming of electricity during 10 days. In the end, it was found that the consumption power of the Raspberry was reduced by about 81% when the Aduino was combined to save power.

Design of a Greenhouse Monitoring System using Arduino and Wireless Communication (아두이노와 무선통신을 이용한 온실 환경 계측 시스템 설계)

  • Sung, Bo Hyun;Cho, Young-Yeol
    • Journal of Bio-Environment Control
    • /
    • v.31 no.4
    • /
    • pp.452-459
    • /
    • 2022
  • One of the important factors among the smart farm factors is environmental measurement. This study tried to design an environmental measurement monitoring system through Bluetooth wireless communication with LoRa using the open source programs Arduino, App Inventor, and Node Red. This system consists of Arduino, LoRa shield, temperature and humidity sensor (SHT10), and carbon dioxide sensor (K30). The environmental measurement system is configured as a system that allows the sensor to collect environmental data and transmit it to the user through wireless communication to conveniently monitor the farm environment. As libraries used in the Arduino program, LoRa.h, Sensirion.h, LiquidCrystal_I2C.h and K30_I2C.h were used. When receiving environmental data from the sensor at regular intervals, coding using average value was used for data stabilization. An Android-based app was developed using Node Red and App Inventor program as the user interface. It can be seen that the environmental data for the sensor is well collected with the screen output to the serial screen of Arduino, the screen of the smartphone, and the user interface of Node Red. Through these open source-based platforms and programs will be applied to various agricultural applications.

Arduino Multi-Authentication System using NFC and OTP (NFC와 OPT를 활용한 아두이노 다중 인증 시스템)

  • Lee, BeomJin;Kim, JuSeong;Yang, GiYeol;Yang, WooBeom;Choi, Changwon
    • Journal of Internet of Things and Convergence
    • /
    • v.2 no.3
    • /
    • pp.25-30
    • /
    • 2016
  • The issued problem in the existed NFC authentication system is the security problem caused by the fixed key and the inconvenience occurred by the extra NFC tag. This paper aims to enhance the security level through OTP system added up the key generation mechanism and the convenience level by the integrated Android App. This proposed authentication system on Arduino will be widely applied to IoT security and will be used on diverse applications.

Improving Safety of Biycle Driver System using Arduino (아두이노를 활용한 자전거 운전자 안전 향상 시스템)

  • Bae, Tae-Hyeon;Kang, Jong-Ho;Park, Ji-Won;Kim, Bum-Su;Lee, Boong-Joo
    • The Journal of the Korea institute of electronic communication sciences
    • /
    • v.12 no.4
    • /
    • pp.525-532
    • /
    • 2017
  • The system is consisted of arduino and sensors for protecting bicycle and safety of driver. The speed indicator is composed of speed alarms which are less than 15km/h, 15~30km/h, over 30km/h through limit switch. At that time, the accuracy is 96.6% compared to actual speed. Also, It gives a person warning ablut the obstacle of 5cm tall through ultrasonic sensor in night. Auto Lock System is operated to protect bicycle and the text message is sent to the user, if the bicycle lock was broken. This system puts emphasis on safety and usability, providing a application to know consuming calories.

Design of Data Center Environmental Monitoring System Based On Lower Hardware Cost

  • Nkenyereye, Lionel;Jang, Jongwook
    • Journal of Multimedia Information System
    • /
    • v.3 no.3
    • /
    • pp.63-68
    • /
    • 2016
  • Environmental downtime produces a significant cost to organizations and makes them unable to do business because what happens in the data center affects everyone. In addition, the amount of electrical energy consumed by data centers increases with the amount of computing power installed. Installation of physical Information Technology and facilities related to environmental concerns, such as monitoring temperature, humidity, power, flood, smoke, air flow, and room entry, is the most proactive way to reduce the unnecessary costs of expensive hardware replacement or unplanned downtime and decrease energy consumed by servers. In this paper, we present remote system for monitoring datacenter implementing using open-source hardware platforms; Arduino, Raspberry Pi, and the Gobetwino. The sensed data displayed through Arduino are transferred using Gobetwino to the nearest host server such as temperature, humidity and distance every time an object hitting another object or a person coming in entrance. The raspberry Pi records the sensed data at the remote location. The objective of collecting temperature and humidity data allows monitoring of the server's health and getting alerts if things start to go wrong. When the temperature hits $50^{\circ}C$, the supervisor at remote headquarters would get a SMS, and then they would take appropriate actions to reduce electrical costs and preserve functionality of servers in data centers.

Development of Arduino-Based Beverage Mixing System (아두이노 기반의 음료 혼합 시스템 개발)

  • Hoo-Jung Yoon;Jeong-Ho Kang;Seon-Je Jo;Jo-Eun Kim;Young-Oh Han
    • The Journal of the Korea institute of electronic communication sciences
    • /
    • v.19 no.1
    • /
    • pp.157-164
    • /
    • 2024
  • In this paper, we would like to develop a system that selects the drink you want with an application made with an app inventory for the person who manufactures the drink and manufactures the drink. After combining the drinks to be mixed with the dispenser, the actuator was controlled to accurately move the ball screw to the location of the dispenser by controlling the step motor through Arduino. According to the actuator movement control and the number of times the dispenser is pressed, the amount of drinks to be mixed is extracted in proportion to each other. Finally, we establish a system to replace the labor force of cafes and further suggest directions that the system can be used everywhere.

Smart Closet based on Arduino MEGA (아두이노 메가 기반의 스마트 옷장)

  • Mun, Se-Hun;Lee, Ju-Hyon;Lee, Ji-Min;Park, Gun-Hee;Han, Young-Oh
    • The Journal of the Korea institute of electronic communication sciences
    • /
    • v.17 no.5
    • /
    • pp.949-958
    • /
    • 2022
  • Modern people have many kinds of clothes for individuals, and not just for storing clothes, but also for managing the condition of the closet, and users of smart closets created smart closets that provide daily convenience and optimal closet conditions, suggesting the possibility of developing smart furniture for various environments. In this developed system, smart closet is controlled using app inventor and touch LCD through bluetooth wireless communication, based on Arduino MEGA and user's clothes is recommended depending on the weather. In addition, this smart closet is designed with real-time weather status checking and easy ventilation function. It was implemented through the Arduino and app inventor program so that the weather can be printed on the LCD screen and the user's suitable clothes can be recommended to the application.

Design and Implementation of Hybrid VR lock system by Arduino Control (아두이노 제어를 통한 증강현실 도어록 설계 및 구현)

  • Lee, Kyung-Mu;Kim, Jin-Il
    • Journal of the Institute of Convergence Signal Processing
    • /
    • v.15 no.3
    • /
    • pp.97-103
    • /
    • 2014
  • Recently, digital door locks have been widely used as physical security devices for the door. Although they are convenient compared to the existing lock system, they have the problem of being opened by an electric shock. In this study, to improve safety, a method to hide the door-lock device inside and to display the door-lock on a user's smart-phone screen through the augmented reality is suggested. Furthermore, an additional function has been added which provides memo notes to facilitate communication among family members. The results of this study have been implemented by using motors to control locks, Wi-Fi shield, Arduino, and a virtually created door and showed desirable experimental results.

Design and Operation of Self-Powered Arduino System for Solar Energy Harvesting (태양에너지 하베스팅을 위한 자가발전 아두이노 시스템의 설계 및 동작)

  • Yoon, Il Pyung;Myeong, Cho Seung;An, Ji Yong;Oh, Seok Jin;Min, Kyeong-Sik
    • Journal of IKEEE
    • /
    • v.26 no.3
    • /
    • pp.483-487
    • /
    • 2022
  • In this paper, we design a self-powered Arduino system for solar energy harvesting and explain its operation. To perform the operation, the Arduino system senses the amount of solar energy that changes every moment and adjusts the ratio of the active mode and sleep mode operation time according to a given solar light intensity. If the intensity of sunlight is strong enough, the Arduino system can be continuously driven in active mode and receive sufficient power from sunlight. If not, the system can run in sleep mode to minimize power consumption. As a result, it can be seen that energy consumption can be minimized by reducing power consumption by up to 81.7% when using sleep mode compared to continuously driving active mode. Also, when the light intensity is at an intermediate level, the ratio between the active mode and the sleep mode is appropriately adjusted according to the light intensity to operate. The method of self-control of the operating time ratio of active mode and sleep mode, proposed in this paper, is thought to be helpful in energy-efficient operation of the self-powered systems for wearables and bio-health applications.