• Title/Summary/Keyword: Haptic user interface

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3D Surface Painting in VR using Force Feedback (포스 피드백을 이용한 가상현실에서의 3차원 표면 페인팅)

  • Kim, Minyoung;Kim, Young J.
    • Journal of the Korea Computer Graphics Society
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    • v.26 no.2
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    • pp.1-9
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    • 2020
  • In this paper, we propose haptic interfaces based on force feedback to provide a physical painting experience to virtual reality users. Through this system, the user can create surface-based painting holding a haptic stylus, while utilizing both visual feedback from the worn HMD and haptic feedback during painting. In particular, the haptic interfaces simulate the physical interaction between painting brush and painting, which can help to improve the spatial perception of users and compensate for visual feedback. This can reduce laborious drawing works to repeatedly paint strokes and therefore yield a better painting performance. As a result, users can experience more effective and realistic VR painting with this system.

A Study of measuring the difference threshold to understand the haptic discrimination element of the handling button in electronic product (전자제품 조작 버튼의 촉각 변별 요소 파악을 위한 차이역 측정 연구)

  • 이건효;최인환;양승무
    • Archives of design research
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    • v.12 no.4
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    • pp.221-229
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    • 1999
  • There are not a few cases which we can handle more safely and conveniently in using the general goods if a haptic clue is offered to a user as a basis of an important judgment.The first purpose of this study is to embody how to study to understand the haptic discrimination element of the handling button in electronic product which can work as the essential elements in the product design and the physical interface. And the next purpose is to investigate basically the way of the adequate usage. We analyzed the basic materials through this study on the documents and planned the experiments with the analyses. We carried out planned experiments, analyzed, and integrated the experimental results. This means making the standard objectively in developing the shape which is an important element of the product design. And it also means the developing and extracting the way of objective information of the haptic intended.

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Tele-Manipulation of ROBHAZ-DT2 for Hazard Environment Applications

  • Ryu, Dong-Seok;Lee, Jong-Wha;Yoon, Seong-Sik;Kang, Sung-Chul;Song, Jae-Bok;Kim, Mun-Sang
    • 제어로봇시스템학회:학술대회논문집
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    • 2003.10a
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    • pp.2051-2056
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    • 2003
  • In this paper, a tele-manipulation in explosive ordnance disposal(EOD) applications is discussed. The ROBHAZ-DT2 is developed as a teleoperated mobile manipulator for EOD. In general, it has been thought that the robot must have appropriate functions and accuracy enough to handle the complicated and dangerous mission. However, the research on the ROBHAZ-DT2 revealed that the teleoperation causes more restrictions and difficulties in EOD mission. Thus to solve the problem, a novel user interface for the ROBHAZ-DT2 is developed, in which the operator can interact with various human senses (i.e. visual, auditory and haptic sense). It enables an operator to control the ROBHAZ-DT2 simply and intuitively. A tele-manipulation control scheme for the ROBHAZ-DT2 is also proposed including compliance control via force feedback. It makes the robot adapt itself to circumstances, while the robot faithfully follows a command of the operator. This paper deals with a detailed description on the user interface and the tele-manipulation control for the ROBHAZ-DT2. An EOD demonstration is conducted to verify the validity of the proposed interface and the control scheme.

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Inflatable Mouse: Volume-adjustable Mouse with Air-pressure-sensitive Input and Haptic Feedback (부풀어지는 마우스: 기압센서를 이용한 입력과 햅틱 피드백을 갖는 부피가 변하는 마우스)

  • Kim, Seok-Tae;Lee, Bo-Ram;Kim, Hyun-Jung;Nam, Tek-Jin;Lee, Woo-Hun
    • 한국HCI학회:학술대회논문집
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    • 2008.02b
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    • pp.323-328
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    • 2008
  • Inflatable Mouse is a volume-adjustable user interface. It can be inflated up to the volume of a familiar mouse, but be deflated and stored flat in a PC card slot of a laptop computer when not in use. Inflatable Mouse functions just like a typical mouse; moreover, it provides new interaction techniques by sensing the air pressure in the balloon of the mouse. It also addresses some issues associated with pressure-sensing interactions such as the lack of bi-directional control and the lack of effective feedback. Moreover, it can be used as both a control tool and a display tool. In this paper, the design of an Inflatable Mouse prototype is described and potential application scenarios such as zooming in/out and fast scrolling using pressure control are explained. We also discuss the potential use of Inflatable Mouse as an emotional communication tool.

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Design of Backrest and Seat Pan of Chairs on the Basis of Haptics-Aided Design Method (햅틱 보조 설계 기법에 기반한 의자의 등판 및 좌판의 설계)

  • Jin, Yong-Jie;Lee, Sang-Duck;Song, Jae-Bok
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.34 no.5
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    • pp.527-533
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    • 2010
  • The feeling that is evoked when products are handled has become increasingly important in the design of products primarily used by humans. In the traditional product design process, prototypes are built several times in order to evaluate the feeling evoked during use. However, these design processes can be optimized by adopting a haptic simulator that can serve as a prototype. The design method based on the use of the haptic simulator is called haptics-aided design (HAD), which is the main subject of this paper. Here, a new HAD method that can be effectively used to design a custom-made chair is proposed. A haptic simulator, which is composed of a haptic chair and an intuitive graphical user interface, was developed. The simulator can adjust the impedance of the backrest and seat pan of a chair in real time. The haptic chair was used instead of real prototypes in order to evaluate the comfort of the initially designed seat pan and backrest on the basis of their stiffness and damping values. It was shown that the HAD method can be effectively used to design a custom-made chair and can be extended to other product design processes.

Design and Implementation of a Real-time Education Assistive Technology System Based on Haptic Display to Improve Education Environment of Total Blindness People (전맹 시각장애인의 교육환경을 개선시키기 위한 햅틱 디스플레이 기반의 실시간 교육보조공학 시스템의 설계 및 구현)

  • Jung, Jung-Il;Kim, Heung-Gi;Cho, Jin-Soo
    • The Journal of the Korea Contents Association
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    • v.11 no.12
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    • pp.94-102
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    • 2011
  • In this paper, we proposed a real-time education assistive technology system based on haptic display to improve education environment of total blindness people. The proposed system consist of a lecture and writing S/W for educator and a previously developed haptic display H/W for total blindness people. The one has the major function which is quickly and easily writing to the education data, that will be provided to total blindness people, through familiar UI, the other has the major function which print out the tactile information about the education data. The result of implementing system not only provides a similar result using existing braille instrument and printer, but shows that it is effective performance and functionality because it can print out the education data in real time.

A Dexterous Teleoperation System for Micro Parts Handling (마이크로 조립시스템의 원격제어)

  • Kim, Deok-Ho;Kim, Kyung-Hwan;Kim, Keun-Young;Park, Jong-Oh
    • Proceedings of the KSME Conference
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    • 2001.06b
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    • pp.158-163
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    • 2001
  • Operators suffer much difficulty in manipulating micro/nano-sized objects without the assistance of human interfaces, due to the scaling effects in micro/nano world. This paper presents a micro manipulation system based on the teleoperation techniques which enables the operators to manipulate the objects with ease by transferring both human motion and manipulation skill to a micromanipulator. An experimental setup consisting of a micromanipulator operated under stereo-microscope with the help of intelligent user interface provides a tool that can be used to visualize and manipulate micro-sized 3D objects in a controlled manner. The key features of a micro manipulation system and control strategies using teleoperation techniques for handling micro objects are presented. Experimental results demonstrate the feasibility of this system in precisely controlling trapping and manipulation of micro objects based on teleoperation techniques.

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Human body learning system using multimodal and user-centric interfaces (멀티모달 사용자 중심 인터페이스를 적용한 인체 학습 시스템)

  • Kim, Ki-Min;Kim, Jae-Il;Park, Jin-Ah
    • 한국HCI학회:학술대회논문집
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    • 2008.02a
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    • pp.85-90
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    • 2008
  • This paper describes the human body learning system using the multi-modal user interface. Through our learning system, students can study about human anatomy interactively. The existing learning methods use the one-way materials like images, text and movies. But we propose the new learning system that includes 3D organ surface models, haptic interface and the hierarchical data structure of human organs to serve enhanced learning that utilizes sensorimotor skills.

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Dynamic Behavior Modelling of Augmented Objects with Haptic Interaction (햅틱 상호작용에 의한 증강 객체의 동적 움직임 모델링)

  • Lee, Seonho;Chun, Junchul
    • Journal of Internet Computing and Services
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    • v.15 no.1
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    • pp.171-178
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    • 2014
  • This paper presents dynamic modelling of a virtual object in augmented reality environments when external forces are applied to the object in real-time fashion. In order to simulate a natural behavior of the object we employ the theory of Newtonian physics to construct motion equation of the object according to the varying external forces applied to the AR object. In dynamic modelling process, the physical interaction is taken placed between the augmented object and the physical object such as a haptic input device and the external forces are transferred to the object. The intrinsic properties of the augmented object are either rigid or elastically deformable (non-rigid) model. In case of the rigid object, the dynamic motion of the object is simulated when the augmented object is collided with by the haptic stick by considering linear momentum or angular momentum. In the case of the non-rigid object, the physics-based simulation approach is adopted since the elastically deformable models respond in a natural way to the external or internal forces and constraints. Depending on the characteristics of force caused by a user through a haptic interface and model's intrinsic properties, the virtual elastic object in AR is deformed naturally. In the simulation, we exploit standard mass-spring damper differential equation so called Newton's second law of motion to model deformable objects. From the experiments, we can successfully visualize the behavior of a virtual objects in AR based on the theorem of physics when the haptic device interact with the rigid or non-rigid virtual object.

Mini-Teleoperation system with a Force-Feedback Haptic Interface within a Virtual Environment (가상환경에서 힘 반영 촉각장치를 이용한 소형 원격조정 시스템)

  • 김대현;김영동;이현의
    • Proceedings of the KIPE Conference
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    • 1998.07a
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    • pp.116-122
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    • 1998
  • This Paper presents some of challenges of creating feedback force, through manipulation of master manipulator, allowing the user to feel objects within a virtual environment. A sense of touch for the virtual environment. A sense of touch for the virtual environments was generated by a virtual compliance control method. In theis system data communication between the master and slave, we used TCP protocol. In the experiments. A position error between the master and slave arm was about $13.56^{\circ}$ in case that the master and slave arm had not compliance properties of the virtual object, while they have the its properties the position error reduced by $2.43^{\circ}$.

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