Journal of Engineering and Applied Sciences

Year: 2017
Volume: 12
Issue: 9 SI
Page No. 8633 - 8639

Development of Kinetic Interactive Art Using Dynamixel Control Shadow Mobile

Authors : Sung-Dae Hong and Ok-Hue Cho

Abstract: Smart phone is center of mass media. Many digital artists are using smart phone in art work. We developed dynamixel shadow mobile using Smartphone has gyro sensor. The rotation of the motor is controlled by the breath of the audience using sensor. Kinect sensors mounted on structure, recognize the position of the spectator is able to control that depends on eight motors installed in parallel with the vertical motion. Dynamic cell motor, planted a unique ID number was developed to allow control of the rotation and the angle of direct communication to each of the motor. In this research, the rotation of the motor is controlled by the breath of the audience using sensor. Kinect sensors mounted on structure, recognize the position of the spectator is able to control that depends on eight motors installed in parallel with the vertical motion. MaxMSP, Jitter are used to programming. Dynamic cell motor, planted a unique ID number was developed to allow control of the rotation and the angle of direct communication to each of the motor. Kinect image the sensor, making the rotation angle with a value of 0-1023 of the eight motors deeply recognized through the audience’s location and video. It was designed to be able to control the length of the line. Further, the audience of the deposit sensor is connected to the Arduino board, the analog data value of 0-254 entered, ligated to the rotational speed of the motor and implemented as a system can be controlled in real time. We implemented the interactive shadow mobile using dynamixel control and kinetic sensor. This task will expand the representation area of interactive art and digital art field.

How to cite this article:

Sung-Dae Hong and Ok-Hue Cho, 2017. Development of Kinetic Interactive Art Using Dynamixel Control Shadow Mobile. Journal of Engineering and Applied Sciences, 12: 8633-8639.

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