• 제목/요약/키워드: Haptic perception

검색결과 40건 처리시간 0.029초

Vibration Tactile Foreign Language Learning: The Possibility of Embodied Instructional Media

  • JEONG, Yoon Cheol
    • Educational Technology International
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    • 제14권1호
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    • pp.41-53
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    • 2013
  • On the basis of two premises and embodied cognition theory, the vibration tactile learning is proposed as an effective method for foreign language learning. The premises are: the real nature of language is sound and the source of sound is vibration. According to embodied cognition theory, cognition is inherently connected to bodily sensation rather than metaphysical and independent. As a result, the vibration tactile learning is: people are able to learn foreign language better by listening to sound and experiencing its vibration through touch rather than solely listening to sound. The effectiveness of vibration tactile learning is tested with two instructional media theories: media comparison and media attribute. For the comparison, an experiment is conducted with control and experimental groups. The attributes of vibration tactile media are investigated in points of relationships with the learning process. The experiment results indicate a small effect on the increased mean score. Three kinds of relationships are found between the media attribute and learning process: enforced stimulus, facilitated pronunciation, and assimilation of resonance to sound patterns through touch. Finally, this paper proposes a new theoretical development for instructional media research: an embodied cognition based media research and development.

햅틱 모델을 이용한 3 차원 가상 판화 시스템 (3D Virtual Engraving with Haptic Feedback)

  • 박세길;박지환;이동욱;박진아
    • 한국HCI학회:학술대회논문집
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    • 한국HCI학회 2006년도 학술대회 1부
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    • pp.219-224
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    • 2006
  • 3 차원 입력 장치는 키보드나 마우스 같은 일반적인 입력 장치로는 받아 들이기 어려운 3 차원 입력을 사용자로부터 간편하고 직관적인 방법으로 받아들일 수 있다는 측면에서 활발히 연구 및 사용되고 있다. 또한 햅틱 장치는 가상 물체의 조작에 따른 시각적인 피드백 외에 가상 물체의 느낌을 피드백 힘을 통해 사용자에게 전달해 줌으로써 컴퓨터와 사용자간의 상호 작용에 큰 도움을 준다. 본 논문은 햅틱 피드백이 적용된 실시간 가변형 모델과 효과적인 3 차원 입력에 대한 기반 연구를 하고자 한다. 그리고 이에 대한 한 가지 사례로써 햅틱 장치를 이용한 가상 판화 시스템을 제작 한다. 가상 판화 시스템은 시각 처리 부분과 촉각 처리 부분, 그리고 사용자의 3 차원 입력을 돕는 인터페이스 부분으로 구성되어 있다. 시각 처리 부분은 3 차원 공간 상에서 사용자의 조각에 따른 판화 표면의 변형을 처리하며 촉각 처리 부분은 실제 판화를 제작할 때 느끼는 촉각을 햅틱 인터페이스를 이용하여 사용자에게 전달한다. 이를 위해 먼저 시각 처리 부분에서는 NURBS 기반의 자유 형상 변형 (FFD)기법을 이용하였는데 가상 조각도에 의한 물체 표면의 지역적인 변형을 구현하기 위해 조각도가 닿는 부분에 대해 기조 격자점 (control point)을 증가시켜 원하는 부분에 대한 지역적인 변화를 용이하도록 하였고 다음으로 촉각 처리 부분에서는 S-chain 모델을 이용하였는데 S-chain 모델을 객체 전체에 적용하지 않고 접촉이 일어날 경우 그 접촉점을 기준으로 S-chain 모델을 지역적으로 적용하는 방법을 고안하여 실제 구현에 이용하였다. 인터페이스 적인 측면에서 사용자의 3 차원 입력장치를 통한 인터렉션은 사용자로 하여금 보다 자유로운 입력을 허용하지만 이에 따른 깊이 지각 문제를 발생시킨다. 이러한 문제를 최소화 시키고 사용자의 깊이 지각을 강화시키기 위해 사용자에게 제공되는 시각적 자극을 변형시키고 다양한 정보를 제공하도록 하였다. 가상 판화 시스템은 가상 환경에서 사용자의 조작에 따른 다양한 결과물을 제작 및 출력해 볼 수 있도록 해준다. 또한 가상 환경에서 이러한 기반을 제공함으로써 가상 환경의 장점인 복사, 이동 및 영구 보존 특성을 동시에 얻을 수 있다. 본 논문은 이러한 작업을 위한 기반 기술로써 햅틱 및 가변형 모델, 3 차원 입력 장치에 대한 시각적 인터페이스에 대해 다루고 이 기반 기술을 바탕으로한 가상 판화 시스템의 구현에 대하여 논하고자 한다.

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노인을 위한 효과적인 시각 정보 디자인: 노인과 손목에 착용하는 보행 보조 장치의 상호 교류에 대한 연구 (Effective Design of Visual Information for the Elderly: A Study on the Interaction between Wrist Band Type Walking Aid Device and the Elderly)

  • 김아람;김혜미;정광민;김진우
    • 감성과학
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    • 제20권2호
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    • pp.11-22
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    • 2017
  • 본 연구는 길 찾는 능력과 거리를 인식하는 능력이 떨어지고 많은 주의력에 어려움을 느끼는 노인을 위해 간헐적인 주의 집중만으로 보행 안내를 받을 수 있는 손목에 착용하는 보행 보조 장치를 개발하기 위해 기존의 촉각 기술을 활용한 보행 보조 기술에서 시각 정보를 활용할 수 있도록 촉각 정보에 병행하는 시각 정보인 화면 UI에 초점을 맞추었다. 기술 수요자인 65세 이상 노인 30명에게 스마트워치를 착용시키고 Wizard of Oz로 네 가지 화면 UI로 길을 찾아가도록 지시한 후 각 화면 UI에 대한 평가 및 사후 인터뷰를 진행하였다. 선호도 순위, 경로를 이탈한 사람의 수, 경로 이탈 횟수에 대해 정량적 분석을 실시하고, 사후 인터뷰를 통해 수집된 사용 경험에 근거해 새로운 이해를 얻고자 질적 연구 방법론인 grounded theory로 정성적 분석을 진행하였으며, 본 연구 결과를 바탕으로 모순적인 요구사항을 가진 노인의 손목시계형 보행 보조 장치 개발 및 후속 연구를 위한 시사점을 도출하였다.

가상환경에서 시각정보와 사전 경험이 힘전달에 미치는 영향에 대한 연구 (Investigation of the Force Transmission Affect by Visual Information and Previous Experience in Virtual Environment)

  • 이재훈;황호성;윤원식
    • 한국시뮬레이션학회논문지
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    • 제22권1호
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    • pp.53-61
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    • 2013
  • 본 논문에서는 시각정보와 경험이 가상환경에서 햅틱 디바이스로 상호작용 하는데 미치는 영향에 대한 연구이다. 이를 알아보기 위해 Load-on-task를 통하여 물체의 크기와 누적된 경험이 가상환경에서 무게를 예측하고 상호작용 하는데 영향을 미친다는 사실을 확인하였다. 또 가상환경에서 물체 이동 실험을 통해 물체에 대한 정보가 다를 경우 빠르게 잘못된 정보를 보상하고 안정적인 힘 조절을 확인하였다. 위 실험을 통해 가상환경에서의 경험이 물체의 시각적인 정보보다 많은 영향을 주지만, 경험이 없는 환경의 경우 시각적인 정보가 가상환경에서 물체와의 상호작용에 크게 영향을 주는 요소라는 것을 확인하였다. 따라서 가상환경에서 정밀한 조작(로봇 수술 등)이 필요한 의 경우 실제 물체의 물성치와 시각 데이터를 기반으로 유사한 환경을 조성해야 하며, 만약 그러한 환경 조성이 어려울 시에는 충분한 사전시험을 통하여 가상환경이 가진 특성을 경험할 수 있게 준비해야 한다.

스티븐 홀의 뮤지엄 건축에 나타나는 공간체험의 현상적 표현 방법 및 특성에 관한 연구 (A Study on the Phenomenal Expression Methods and the Characteristics of Spatial Experience In the Steven Holl's Museum Architecture)

  • 장현주;박찬일
    • 한국실내디자인학회논문집
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    • 제25권2호
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    • pp.151-162
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    • 2016
  • The purpose of this study is to approach to the phenomenological point of view to explore a design method for providing a variety of spatial experience of the viewer according to the functional changes of the modern museum architecture. For that, this study intends to analysis and consider the Steven Holl's Museum applied to the phenomenological perception for architectural design. The method of this study is summarized as follows: 1) Consider the spatial role and function of the Museum Architecture in the phenomenological approach 2) Study on the phenomenological architectural concepts and expressional method of Steven Holl 3) Finally, propose the utilization for the experiential space that is required to implement the contemporary museum architecture. The results of this study are as follows: 1) Steven Holl's phenomenological architectural concept is the basis of the perception and awareness and has connotations of temporality and it is figured out by the approach to the environment, sense and motion. 2) Steven Holl implement the architecture as a place of experience by connecting between the place and the environment through the development of a variety of scenes and situations and planning the phenomenon of multisensory space. 3) The spatial experience appeared in Steven Holl's museum architecture is implemented through the diversity of the scene, the persistence of the situation, the autonomy of light and color, transparency of the haptic and the potential of the material and geometry.

진동자극에 대한 상지 절단자의 전완부 감각 인지 크기와 불쾌감 측정 (The Measurement of the Magnitude of Sensory Perception and Displeasure to the Vibration Stimuli applied on Forearm in upper Limb Amputees)

  • 김솔비;장윤희;김신기;김규석;문무성;배태수
    • 한국정밀공학회지
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    • 제29권7호
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    • pp.705-710
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    • 2012
  • Research involving discomfort or pain related to haptic vibratory stimulation the for prosthesis users of myoelectrical hand is very lacking. Our objective of this study was to evaluate the displeasure and sensitivity of areas in forearm using vibration stimulation system between upper limb amputees and non-amputees. Twenty transradial amputees and forty non-amputees (20 youth, 20 elderly) were involved. We set up custom-made vibration stimulation system including eight actuators (4 medial parts and 4 lateral parts) and GUI-based acquisition system, to investigate changes of residual somatosensory sensibility and displeasure at proximal 25% of forearm. Eight vibration actuators were attached to the circumference of proximal 25% point of forearm at regular intervals. Sensitivity tests were used to stimulate the 120Hz and discomfort experiment was used to 37 ~ 223Hz. The subjective responses were evaluated by 10 point scale. The results showed that both groups were similar in sensitive areas. Response at around of radius was most sensitive than other areas in all subjects. Elderly group do not appear discomfort of vibrotactile; however, youth group and amputee presented discomfort of vibrotactile. Prosthesis with a vibrotactile feedback system should be developed considering the sensitivity. Furthermore, Future studies should investigate the scope of application of that principle.

Incorporating "Kansei Engineering" Approach on Traditional Textiles - A Proposed Method for Identifying Multi-Sensorial Experiences on the Kansei Attributes of Traditional Textiles -

  • Syarief, Achmad
    • 복식문화연구
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    • 제20권1호
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    • pp.121-127
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    • 2012
  • When people are asked to described certain textiles, they frequently refer to the expressions of its properties such as attractiveness, uniqueness, shininess, robustness, comfortability, and so on. It shows how senses play important role in it. Human employs their senses when interacting with textiles, most notably visual and tactile/ haptic to absorb its expressive properties. Yet, our sensorial experiences may amplify when interacting with those of traditional textiles, such as batik, as we can entice sensations when seeing its motifs and patterns, smelling its materials, and touching its surfaces. The multi-sensorial importance of seeing, smelling, and touching in the interaction with and experience of textiles suggests that one should address senses in a systematic way when evaluating users' perception on traditional textiles. To address this issue, the paper proposes the incorporation of Kansei Engineering (KE) approach for identifying multi-sensorial experiences on the expressive properties of traditional textiles, using batik as a case of study. KE approach address person's psychological understanding when observing things in order to analyze and study the inherent relationship between person's perceptual knowledge and objects evaluated. This paper outlines the use of KE approach in correlating sensorial perceptions when experience with traditional textiles and ultimately expose users' preferences toward them. Background of KE approach on textiles will be explored and its application for the multi-sensorial investigation of traditional textiles will be discussed.

Gesture Control Gaming for Motoric Post-Stroke Rehabilitation

  • Andi Bese Firdausiah Mansur
    • International Journal of Computer Science & Network Security
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    • 제23권10호
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    • pp.37-43
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    • 2023
  • The hospital situation, timing, and patient restrictions have become obstacles to an optimum therapy session. The crowdedness of the hospital might lead to a tight schedule and a shorter period of therapy. This condition might strike a post-stroke patient in a dilemma where they need regular treatment to recover their nervous system. In this work, we propose an in-house and uncomplex serious game system that can be used for physical therapy. The Kinect camera is used to capture the depth image stream of a human skeleton. Afterwards, the user might use their hand gesture to control the game. Voice recognition is deployed to ease them with play. Users must complete the given challenge to obtain a more significant outcome from this therapy system. Subjects will use their upper limb and hands to capture the 3D objects with different speeds and positions. The more substantial challenge, speed, and location will be increased and random. Each delegated entity will raise the scores. Afterwards, the scores will be further evaluated to correlate with therapy progress. Users are delighted with the system and eager to use it as their daily exercise. The experimental studies show a comparison between score and difficulty that represent characteristics of user and game. Users tend to quickly adapt to easy and medium levels, while high level requires better focus and proper synchronization between hand and eye to capture the 3D objects. The statistical analysis with a confidence rate(α:0.05) of the usability test shows that the proposed gaming is accessible, even without specialized training. It is not only for therapy but also for fitness because it can be used for body exercise. The result of the experiment is very satisfying. Most users enjoy and familiarize themselves quickly. The evaluation study demonstrates user satisfaction and perception during testing. Future work of the proposed serious game might involve haptic devices to stimulate their physical sensation.

Wearable Computers

  • Cho, Gil-Soo;Barfield, Woodrow;Baird, Kevin
    • 섬유기술과 산업
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    • 제2권4호
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    • pp.490-508
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    • 1998
  • One of the latest fields of research in the area of output devices is tactual display devices [13,31]. These tactual or haptic devices allow the user to receive haptic feedback output from a variety of sources. This allows the user to actually feel virtual objects and manipulate them by touch. This is an emerging technology and will be instrumental in enhancing the realism of wearable augmented environments for certain applications. Tactual displays have previously been used for scientific visualization in virtual environments by chemists and engineers to improve perception and understanding of force fields and of world models populated with the impenetrable. In addition to tactual displays, the use of wearable audio displays that allow sound to be spatialized are being developed. With wearable computers, designers will soon be able to pair spatialized sound to virtual representations of objects when appropriate to make the wearable computer experience even more realistic to the user. Furthermore, as the number and complexity of wearable computing applications continues to grow, there will be increasing needs for systems that are faster, lighter, and have higher resolution displays. Better networking technology will also need to be developed to allow all users of wearable computers to have high bandwidth connections for real time information gathering and collaboration. In addition to the technology advances that make users need to wear computers in everyday life, there is also the desire to have users want to wear their computers. In order to do this, wearable computing needs to be unobtrusive and socially acceptable. By making wearables smaller and lighter, or actually embedding them in clothing, users can conceal them easily and wear them comfortably. The military is currently working on the development of the Personal Information Carrier (PIC) or digital dog tag. The PIC is a small electronic storage device containing medical information about the wearer. While old military dog tags contained only 5 lines of information, the digital tags may contain volumes of multi-media information including medical history, X-rays, and cardiograms. Using hand held devices in the field, medics would be able to call this information up in real time for better treatment. A fully functional transmittable device is still years off, but this technology once developed in the military, could be adapted tp civilian users and provide ant information, medical or otherwise, in a portable, not obstructive, and fashionable way. Another future device that could increase safety and well being of its users is the nose on-a-chip developed by the Oak Ridge National Lab in Tennessee. This tiny digital silicon chip about the size of a dime, is capable of 'smelling' natural gas leaks in stoves, heaters, and other appliances. It can also detect dangerous levels of carbon monoxide. This device can also be configured to notify the fire department when a leak is detected. This nose chip should be commercially available within 2 years, and is inexpensive, requires low power, and is very sensitive. Along with gas detection capabilities, this device may someday also be configured to detect smoke and other harmful gases. By embedding this chip into workers uniforms, name tags, etc., this could be a lifesaving computational accessory. In addition to the future safety technology soon to be available as accessories are devices that are for entertainment and security. The LCI computer group is developing a Smartpen, that electronically verifies a user's signature. With the increase in credit card use and the rise in forgeries, is the need for commercial industries to constantly verify signatures. This Smartpen writes like a normal pen but uses sensors to detect the motion of the pen as the user signs their name to authenticate the signature. This computational accessory should be available in 1999, and would bring increased peace of mind to consumers and vendors alike. In the entertainment domain, Panasonic is creating the first portable hand-held DVD player. This device weight less than 3 pounds and has a screen about 6' across. The color LCD has the same 16:9 aspect ratio of a cinema screen and supports a high resolution of 280,000 pixels and stereo sound. The player can play standard DVD movies and has a hour battery life for mobile use. To summarize, in this paper we presented concepts related to the design and use of wearable computers with extensions to smart spaces. For some time, researchers in telerobotics have used computer graphics to enhance remote scenes. Recent advances in augmented reality displays make it possible to enhance the user's local environment with 'information'. As shown in this paper, there are many application areas for this technology such as medicine, manufacturing, training, and recreation. Wearable computers allow a much closer association of information with the user. By embedding sensors in the wearable to allow it to see what the user sees, hear what the user hears, sense the user's physical state, and analyze what the user is typing, an intelligent agent may be able to analyze what the user is doing and try to predict the resources he will need next or in the near future. Using this information, the agent may download files, reserve communications bandwidth, post reminders, or automatically send updates to colleagues to help facilitate the user's daily interactions. This intelligent wearable computer would be able to act as a personal assistant, who is always around, knows the user's personal preferences and tastes, and tries to streamline interactions with the rest of the world.

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사실적인 햅틱 표현을 위한 질감지각 감성 평가 (An Evaluation of Human Sensibility on Perceived Texture for Real Haptic Representation)

  • 김승찬;경기욱;손진훈;권동수
    • 한국정보과학회논문지:소프트웨어및응용
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    • 제34권10호
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    • pp.900-909
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    • 2007
  • 본 논문에서는 질감제시장치의 주파수와 진폭의 변화를 이용하여 실시한 예비 실험과 본 실험으로 이루어진 감성평가의 실험에 대해 서술한다. 먼저 예비 실험은 관련 형용사 수집, 적합성 평가, 유사성 평가의 세 단계로 구성되어 있으며, 질감 인식과 관련된 유효한 형용사들을 찾는데 목적을 둔다. 예비실험의 첫 단계인 수집 단계에서 33개의 질감인식과 관련된 형용사를 얻을 수 있었으며, 이들은 형용사의 적합성 평가와 유사성 평가를 통해 최종적인 유효한 10개의 질감 요소로 정리되었다. 이렇게 예비실험 결과 얻어진 10개의 형용사는 본 실험에서의 기초 감각을 기술하는 중요한 요소로서 사용이 된다. 본 실험에서는 10개의 감각의 요소를 규격을 갖춘 7종류의 사포와 질감제시장치의 일정 기준에 의해 선정된 15개의 주파수와 진폭의 조합으로 평가가 된다. 실험 결과 사람에게 인지되는 추상적인 거칠기의 감각요소는 표면의 공간정보(spatial information)에 의해 결정되는 울퉁불퉁함(ruggedness)와 표면의 공간정보 뿐 아니라 시간정보(spatio-temporal information)에 의해 결정되는 까끌까끌함(prickliness)의 두 감각의 요소로 구성되어 있음을 확인할 수 있었다. 또한 개발된 질감제시 장치의 정량적인 제어를 통해 두 가지 감각의 요소를 다양하게 유도시킬 수 있음을 확인하였다.