A Development of Multi-Emotional Signal Receiving Modules for Cellphone Using Robotic Interaction

  • Jung, Yong-Rae (Division of Information Technology Engineering, Soonchunhyang University) ;
  • Kong, Yong-Hae (Division of Information Technology Engineering, Soonchunhyang University) ;
  • Um, Tai-Joon (Department of Mechanical Engineering, Soonchunhyang University) ;
  • Kim, Seung-Woo (Division of Information Technology Engineering, Soonchunhyang University)
  • Published : 2005.06.02

Abstract

CP (Cellular Phone) is currently one of the most attractive technologies and RT (Robot Technology) is also considered as one of the most promising next generation technology. We present a new technological concept named RCP (Robotic Cellular Phone), which combines RT and CP. RCP consists of 3 sub-modules, $RCP^{Mobility}$, $RCP^{Interaction}$, and $RCP^{Integration}$. $RCP^{Interaction}$ is the main focus of this paper. It is an interactive emotion system which provides CP with multi-emotional signal receiving functionalities. $RCP^{Interaction}$ is linked with communication functions of CP in order to interface between CP and user through a variety of emotional models. It is divided into a tactile, an olfactory and a visual mode. The tactile signal receiving module is designed by patterns and beat frequencies which are made by mechanical-vibration conversion of the musical melody, rhythm and harmony. The olfactory signal receiving module is designed by switching control of perfume-injection nozzles which are able to give the signal receiving to the CP-called user through a special kind of smell according to the CP-calling user. The visual signal receiving module is made by motion control of DC-motored wheel-based system which can inform the CP-called user of the signal receiving through a desired motion according to the CP-calling user. In this paper, a prototype system is developed for multi-emotional signal receiving modes of CP. We describe an overall structure of the system and provide experimental results of the functional modules.

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