• Title/Summary/Keyword: sensor manipulation

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Contractile Force Measurements of Cardiac Myocytes Using a Micro-manipulation System

  • Park Suk-Ho;Ryu Seok-Kyu;Ryu Seok-Chang;Kim Deok-Ho;Kim Byung-Kyu
    • Journal of Mechanical Science and Technology
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    • v.20 no.5
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    • pp.668-674
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    • 2006
  • In order to develop a cell based robot, we present a micro-mechanical force measurement system for the biological muscle actuators, which utilize glucose as a power source. The proposed measurement system is composed of a micro-manipulator, a force transducer with a glass probe, a signal processor, an inverted microscope and video recording system. Using this measurement system, the contractile force and frequency of the cardiac myocytes were measured in real time and the magnitudes of the contractile force of each cardiac myocyte under different conditions were compared. From the quantitative experimental results, we could estimate that the force of cardiac myocytes is about $20\sim40{\mu}N$, and show that there are differences between the control cells and the micro-patterned cells.

Development of Polymer Slip Tactile Sensor Using Relative Displacement of Separation Layer (분리층의 상대 변위를 이용한 고분자 미끄럼 촉각 센서 개발)

  • Kim, Sung-Joon;Choi, Jae-Young;Moon, Hyung-Pil;Choi, Hyouk-Ryeol;Koo, Ja-Choon
    • The Journal of Korea Robotics Society
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    • v.11 no.2
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    • pp.100-107
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    • 2016
  • To realize a robot hand interacting like a human hand, there are many tactile sensors sensing normal force, shear force, torque, shape, roughness and temperature. This sensing signal is essential to manipulate object accurately with robot hand. In particular, slip sensors make manipulation more accurate and breakless to object. Up to now several slip sensors were developed and applied to robot hand. Many of them used complicate algorithm and signal processing with vibration data. In this paper, we developed novel principle slip sensor using separation layer. These two layers are moved from each other when slip occur. Developed sensor can sense slip signal by measuring this relative displacement between two layers. Also our principle makes slip signal decoupled from normal force and shear force without other sensors. The sensor was fabricated using the NBR(acrylo-nitrile butadiene rubber) and the Ecoflex as substrate and a paper as dielectric. To verify our sensor, slip experiment and normal force decoupling test were conducted.

A Design and Manufacturing of Two Types of Micro-grippers using Piezoelectric Actuators for the Micromanipulation (미세 조작을 위한 압전 구동 집게의 설계 및 제작)

  • 박종규;문원규
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2003.06a
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    • pp.246-250
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    • 2003
  • In this study, two new types of micro-grippers in which micro-fingers are actuated by piezoelectric multi-layer benders and stacks are introduced for the manipulation of micrometer-sized objects. First, we constructed a 3-chopstick-mechanism tungsten gripper, which is composed of three chopsticks: two are designed to grip micro-objects, and tile third is used to help grasp and release the objects through overcoming especially electrostatic force among some surface effects including electrostatic, van der Waals forces and surface tension. Second, a 2-chopstick-mechanism silicon micro-gripper that uses an integrated force sensor to control the gripping force was developed. The micro-gripper is composed of a piezoelectric multilayer bender for actuating the gripper fingers, silicon fingertips fabricated by use of silicon-based micromachining, and supplementary supports. The micro-gripper is referred to as a hybrid-type micro-gripper because it is composed of two main components; micro-fingertips fabricated using micromachining technology to integrate a very sensitive force sensor for measuring the gripping force, and piezoelectric gripper finger actuators that are capable of large gripping forces and moving strokes. The gripping force signal was found to have a sensitivity of 667 N/V. To the design of each of components of both of the grippers. a systematic design approach was applied, which made it possible to establish the functional requirements and design parameters of the micro-grippers. The micro-grippers were installed on a manual manipulator to assess its performance in tasks such as moving micro-objects from one position to a desired position. The experiment showed that the micro-grippers function effectively.

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Development of a Tactile Array Sensor Layered in Artificial Skin for Robot Hand (로봇 손의 인공 피부형 접촉 센서의 개발)

  • Lim, Mee-Seub;Oh, S.R.;Lee, J.W.;Dario, P.
    • Proceedings of the KIEE Conference
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    • 1996.07b
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    • pp.1272-1274
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    • 1996
  • This paper presents the development of tactile sensor systems for robot hand which are truly usable, robust, reliable and cheap system. The sensor incorporates multiple sensing subsystems for detecting distributed contact forces and surface characteristics. The fabrication and experimental evaluation of the tactile system and its electric interfaces are described. The results indicate that the system provides reasonable performances for practical applications requiring manipulation with tactile feedback.

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VRSMS: VR-based Sensor Management System (VRSMS: 가상현실 기반 센서 관리 시스템)

  • Kim, Han-Soo;Kim, Hyung-Seok
    • Journal of the HCI Society of Korea
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    • v.3 no.2
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    • pp.1-8
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    • 2008
  • We introduce VRSMS(VR-based sensor management system) which is the visualization system of micro-scale air quality monitoring system Airscope[3]. By adopting VR-based visualization method, casual users can get insight of air quality data intuitively. Users can also manipulate sensors in VR space to get specific data they needed. For adaptive visualization, we separated visualization and interaction methods from air quality data. By separation, we can get consistent way for data access so new visualization and interaction methods are easily attached. As one of the adaptive visualization method, we constructed large display system which consists of several small displays. This system can provide accessibility for air quality data to people one public space.

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A Contextual Information and Physics-based Mobile Augmented Reality Contents Manipulation Method (맥락 정보와 물리적 속성 부여가 가능한 모바일 증강 현실 콘텐츠 조작 방법)

  • Hong, Dong-Pyo;Lee, Jeong-Gyu;Chae, Chang-Hun;Lee, Jong-Weon;Ko, Kwang-Hee;Woo, Woon-Taek
    • 한국HCI학회:학술대회논문집
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    • 2009.02a
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    • pp.526-530
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    • 2009
  • In this paper, we propose a contextual information and physics-based contents manipulation method for a mobile augmented reality authoring system. Due to proliferation of ubiquitous computing in information technology(IT) and advances in sensor technology and mobile devices, AR systems that were only possible in PC can be now feasible on mobile devices. In addition, many AR systems have been proposed that utilize sensory data and reflect them into. Thus, the proposed method provides appropriate visual cues for 3D manipulations of the augmented contents. In addition, uses can manipulate the augmented contents with sensory information through the assignment of sensors to the contents. Moreover, it supports not only a physics-based contents loader that enables users to specify physics properties into the contents, but also the transform matrix between AR and physics engine coordinates. To show the feasibility of the proposed method, we implemented a mobile augmented reality authoring system. We believe that the proposed method can be a key factor for context-aware mobile AR authoring system.

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Monitoring and Control of Turning Chatter using Sound Pressure (음압을 이용한 선삭작업에서의 채터감시 및 제어)

  • 이성일
    • Proceedings of the Korean Society of Machine Tool Engineers Conference
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    • 1996.10a
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    • pp.85-90
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    • 1996
  • In order to detect and suppress chatter in turning processes a stability control methodology was studied through manipulation of spindle speeds regarding to chatter frequencies. The chatter frequency was identified by monitoring and signal processing of sound pressure during turning on a lathe. The stability control methodology can select stable spindle speeds without knowing a prior knowledge of machine compliances and cutting dynamics. Teliability of the developed stability control methodology was verified through turning experiments on an engine lathe. Experimental results show that a microphone is an excellent sensor for chatter detection and control

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최근 Micro Piezoelectric Actuator 연구 동향

  • 박준식;박효덕;강성군
    • Ceramist
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    • v.7 no.3
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    • pp.38-47
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    • 2004
  • 최근 micro structure, micro sensor, micro actuator 및 microelectronics 등을 활용하는 microelectromecha-nical systems (MEMS) 기술은 마이크로 로봇, micro manipulation, 광학 소자 및 시스템, 유체, 열, 바이오 및 화학공정 등을 위한 시스템 그리고 atomic force와 scanning tunneling microscope 등에 사용되는 다양한 소자 등 많은 잠재력을 가지고 있다. 이들 응용 분야 들은 micro actuator와 같은 mechanical power source가 요구되는 경우가 있다. 압전 특성을 포함하는 강유전체 재료는 이러한 micro actuator를 위해 여러 가지 다양한 장점을 지니고 있는데, 이들을 정리하면 다음과 같다. (중략)

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Fabrication and Experiment of Ultrasonic Sensor Integrated Motion Recognition Device for Vehicle Manipulation (초음파 센서를 이용한 모션 인식 차량 통합 제어 장치의 제작 및 실험)

  • Na, Yeongmin;Park, Jongkyu;Lee, Hyunseok;Kang, Taehun
    • Journal of Sensor Science and Technology
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    • v.24 no.3
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    • pp.175-180
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    • 2015
  • Worldwide, studies on intelligent vehicles for the convenience of drivers have been actively conducted as the number of cars has increased. However, vehicle convenience enabled by buttons lowers the concentration on driving and hence poses as a huge threat to the safety of the driver. The use of one of the convenient features, impaired driving auxiliary equipment, is limited because of its complex usage, and this device also hinders the front view of the driver. This paper proposes a vehicle-control device for controlling the convenient features as well as changes in speed and direction using gestures and motions of the driver. This device consists of an ultrasonic sensor for recognizing movement, an arduino for accepting signal control functions and servo and DC motors apply to various vehicle parts. Firstly, the vehicle-control device was designed using a 3D CAD program known as Solid-works based on the size of the steering wheel. Then, through simulations, a suitable length for minimizing the absorbent between ultrasonic sensors was confirmed using a program known as COMSOL Multiphysics. Finally, simulation results were verified through experiments, and the optimal size of the device was identified through the number of errors.

Bio-inspired neuro-symbolic approach to diagnostics of structures

  • Shoureshi, Rahmat A.;Schantz, Tracy;Lim, Sun W.
    • Smart Structures and Systems
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    • v.7 no.3
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    • pp.229-240
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    • 2011
  • Recent developments in Smart Structures with very large scale embedded sensors and actuators have introduced new challenges in terms of data processing and sensor fusion. These smart structures are dynamically classified as a large-scale system with thousands of sensors and actuators that form the musculoskeletal of the structure, analogous to human body. In order to develop structural health monitoring and diagnostics with data provided by thousands of sensors, new sensor informatics has to be developed. The focus of our on-going research is to develop techniques and algorithms that would utilize this musculoskeletal system effectively; thus creating the intelligence for such a large-scale autonomous structure. To achieve this level of intelligence, three major research tasks are being conducted: development of a Bio-Inspired data analysis and information extraction from thousands of sensors; development of an analytical technique for Optimal Sensory System using Structural Observability; and creation of a bio-inspired decision-making and control system. This paper is focused on the results of our effort on the first task, namely development of a Neuro-Morphic Engineering approach, using a neuro-symbolic data manipulation, inspired by the understanding of human information processing architecture, for sensor fusion and structural diagnostics.