首页> 外文会议>International Conference on Innovation Design and Digital Technology >Application of digital art device in design : Design of visual device for droplet suspension based on Arduino
【24h】

Application of digital art device in design : Design of visual device for droplet suspension based on Arduino

机译:数字艺术装置在设计中的应用:基于Arduino的液滴悬架视觉装置设计

获取原文

摘要

The universal application of digital technology has broken the design mode of traditional art device and played a pioneering role in the design and innovation of art device. This paper describes the application of digital technology in case of art device design, and explores the application method of digital technology in art device design.The water droplet suspension visual device is a device that forms a visual effect of water droplet suspension by controlling the consistency between vibration frequency of the water flow and the flashing frequency of the lights. In this paper, an art device was designed by Arduino Uno. In the experiment, water was sucked up from the cup by a pump and discharged again. The water was drawn from the water cup by the water pump and then flowed out. The sine wave signal generated by APP on the mobile phone was amplified by power amplifier, and the water flow was vibrated through loudspeaker. Digital clock and temperature display functions have also been added to increase the utility of the device. The device produced different visual effects through the combination of vibrating water flow and stroboscopic light. When the vibration frequency of the water flow was consistent with the flashing frequency of the light, the visual effect of visible water droplets standing still in the air will be formed.
机译:数字技术的普遍应用破坏了传统艺术设备的设计模式,在艺术设备的设计和创新中发挥了开创性的作用。本文介绍了数字技术在艺术设备设计中的应用,探讨了艺术装置设计中数字技术的应用方法。水滴悬架视觉装置是通过控制稠度来形成水滴悬架的视觉效果的装置水流的振动频率与灯光闪电频率之间。在本文中,由Arduino Uno设计了艺术装置。在实验中,水被泵从杯中吸收并再次排出。水泵从水杯中抽出水,然后流出。通过电力放大器(移动电话上的应用)产生的正弦波信号通过功率放大器放大,通过扬声器振动水流。还添加了数字时钟和温度显示功能以增加设备的实用程序。该器件通过振动水流和频闪光的组合产生了不同的视觉效果。当水流的振动频率与光的闪光频率一致时,将形成静止在空气中的可见水滴的视觉效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号