An Arduino-Based Resonant Cradle Design with Infant Cries Recognition

被引:8
|
作者
Chao, Chun-Tang [1 ]
Wang, Chia-Wei [1 ]
Chiou, Juing-Shian [1 ]
Wang, Chi-Jo [1 ]
机构
[1] Southern Taiwan Univ Sci & Technol, Dept Elect Engn, Tainan 71005, Taiwan
来源
SENSORS | 2015年 / 15卷 / 08期
关键词
Arduino; resonance; cradle; infant cry; fundamental frequency;
D O I
10.3390/s150818934
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
This paper proposes a resonant electric cradle design with infant cries recognition, employing an Arduino UNO as the core processor. For most commercially available electric cradles, the drive motor is closely combined with the bearing on the top, resulting in a lot of energy consumption. In this proposal, a ball bearing design was adopted and the driving force is under the cradle to increase the distance from the object to fulcrum and torque. The sensors are designed to detect the oscillation state, and then the force is driven at the critical time to achieve the maximum output response while saving energy according to the principle of resonance. As for the driving forces, the winding power and motors are carefully placed under the cradle. The sensors, including the three-axis accelerometer and infrared sensor, are tested and applied under swinging amplitude control. In addition, infant cry recognition technology was incorporated in the design to further develop its functionality, which is a rare feature in this kind of hardware. The proposed nonlinear operator of fundamental frequency (f0) analysis is able to identify different types of infant cries. In conclusion, this paper proposes an energy-saving electric cradle with infant cries recognition and the experimental results demonstrate the effectiveness of this approach.
引用
收藏
页码:18934 / 18949
页数:16
相关论文
共 50 条
  • [1] Design of An Arduino-based Smart Car
    Wang, Zhao
    Lim, Eng Gee
    Wang, Weiwei
    Leach, Mark
    Man, Ka Lok
    2014 INTERNATIONAL SOC DESIGN CONFERENCE (ISOCC), 2014, : 175 - 176
  • [2] An Arduino-Based Magnetometer
    McCaughey, Mike
    PHYSICS TEACHER, 2017, 55 (05): : 274 - 275
  • [3] Design of Arduino-based Communication Agent for Rural Indian Microgrids
    Dhiwaakar, Purusothaman S. R. R.
    Rajesh, Ramesh
    Vijayaraghavan, Vineeth
    Bajaj, Karan K.
    2014 IEEE INNOVATIVE SMART GRID TECHNOLOGIES - ASIA (ISGT ASIA), 2014, : 630 - 634
  • [4] Design of Arduino-based small wind power generation system
    Al Mubarok, Abdul Goffar
    Djatmiko, Wisnu
    Yusro, Muhammad
    3RD INTERNATIONAL TROPICAL RENEWABLE ENERGY CONFERENCE SUSTAINABLE DEVELOPMENT OF TROPICAL RENEWABLE ENERGY (I-TREC 2018), 2018, 67
  • [5] Building An Arduino-Based Scrolling Sign
    Craft, Brock
    ELECTRONICS WORLD, 2014, 120 (1933): : 36 - 37
  • [6] Arduino-based Recreation of Telecommunication Systems
    Ruiz-Garcia, Margarita
    Velasco-Alvarez, Francisco
    Reyes-Lecuona, Arcadio
    2024 XVI CONGRESO DE TECNOLOGIA, APRENDIZAJE Y ENSENANZA DE LA ELECTRONICA, TAEE 2024, 2024,
  • [7] Arduino-Based Projects in Physics Education
    Oprea, Marin
    PROCEEDINGS OF THE 14TH INTERNATIONAL SCIENTIFIC CONFERENCE ELEARNING AND SOFTWARE FOR EDUCATION: ELEARNING CHALLENGES AND NEW HORIZONS, VOL 2, 2018, : 107 - 113
  • [8] Arduino-Based Novel Hardware Design for Liquid Helium Level Measurement
    Khan, Pathan Fayaz
    Sengottuvel, S.
    Patel, Rajesh
    Mani, Awadhesh
    Gireesan, K.
    SLAS TECHNOLOGY, 2018, 23 (05): : 456 - 462
  • [9] Design of an Arduino-based home fire alarm system with GSM module
    Mahzan, N. N.
    Enzai, N. I. M.
    Zin, N. M.
    Noh, K. S. S. K. M.
    1ST INTERNATIONAL CONFERENCE ON GREEN AND SUSTAINABLE COMPUTING (ICOGES) 2017, 2018, 1019
  • [10] Arduino-Based Biosensor Impedance Measurement
    Khamis, Nurul Najwa
    Za'bah, Nor F.
    Mansor, Ahmad Fairuzabadi
    Nordin, Anis Nurashikin
    PROCEEDINGS OF 6TH INTERNATIONAL CONFERENCE ON COMPUTER AND COMMUNICATION ENGINEERING (ICCCE 2016), 2016, : 191 - 194