• 제목/요약/키워드: Electromagnetic Actuation System

검색결과 13건 처리시간 0.023초

전자기 구동 시스템을 이용한 마이크로로봇의 3차원 이동 및 드릴링 (Three-dimensional Locomotion and Drilling Microrobot Using Electromagnetic Actuation System)

  • 이걸;최현철;차경래;정세미;박종오;박석호
    • 대한기계학회논문집A
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    • 제35권12호
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    • pp.1573-1578
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    • 2011
  • 이 논문에서는 전자기구동시스템을 기반으로 이동 및 드릴링 기능을 수행하는 의료용 마이크로로봇 시스템을 제작하고 평가하였다. 마이크로로봇은 너무 작아 내부에 배터리나 제어장치를 삽입 할수 없다. 이 결점을 극복하기 위하여 외부에서 전자기 코일 시스템을 이용하여 전자기장의 힘으로 마이크로로봇을 구동 시킨다. 전자기 구동 코일 시스템은 x, y, z 각축에 사각형 타입의 헬름홀쯔 코일 3 쌍과 z축에 솔레노이드형 맥스웰 코일 1 쌍이 배치 되어 있고, 각 코일에 인가되는 전류값의 조절에 따라 구동에 필요한 자기장을 발생 시킨다. 다양한 실험을 통하여 우리는 제안된 시스템을 이용하여 마이크로로봇이 3 차원 공간에서 이동 가능하며 드릴링 기능을 수행할 수 있다는 것을 보였다.

정전력 구동 및 전자력 검출형 평면 진송 각속도계 (Planar Vibratory Gyroscope using Electrostatic Actuation and Electromagnetic Detection)

  • 이상훈;임형택;이승기
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1995년도 추계학술대회 논문집
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    • pp.1089-1092
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    • 1995
  • A planar vibratory gyroscope using electrostatic actuation and electromagnetic detection is proposed. The gyroscope has large sensitivity and can be fabricated by using surface micrimachining, bulk micromachining and conventional machining technology. In this paper, the gyroscope and the electromagnetic detecting system equations are derived to determine the output characteristics for the planar vibratory gyroscope using electrostatic acturation and electromagnetic detection. The maximum output is obtained when the driving frequencyequals to the detecting frequency. The resonant frequencies of the resonator are determined by the beam stiffness, i.e. the material constants and spring dimensions. The dimensions of the beams are determined using the analytic vibration modelling. The expected resonant frequencies are 200Hz both and the sensitivity is 62mV/deg/sec with 4000 electronic circuit amplifying coefficient for an AC drive voltage of 3V bias voltage of 15V and DC field current of 50 mA.

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전자기웨이브에 의해 제어되는 무선형 그래핀-카본나노튜브 액츄에이터 (Wireless Graphene Oxide-CNT Bilayer Actuator Controlled with Electromagnetic Wave)

  • ;오일권
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2011년도 정기 학술대회
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    • pp.282-284
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    • 2011
  • Based on graphene oxide and multi-walled carbon nanotube layers, a wireless bi-layer actuator that can be remotely controlled with an electromagnetic induction system has been developed. The graphene-based bi-layer actuator exhibits a large one-way bending deformation under eddy current stimuli due to asymmetrical responses originating from the temperature difference of the two different carbon layers. In order to validate one-way bending actuation, the coefficients of thermal expansion of carbon nanotube and graphene oxide are mathematically formulated in this study based on the atomic bonding energy related to the bonding length. The newly designed graphene-based bi-layer actuator is highly sensitive to electromagnetic wave irradiation thus it can trigger a new actuation mode for the realization of remotely controllable actuators and is expected to have potential applications in various wireless systems.

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A Novel Nonmechanical Finger Rehabilitation System Based on Magnetic Force Control

  • Baek, In-Chul;Kim, Min Su;Kim, Sung Hoon
    • Journal of Magnetics
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    • 제22권1호
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    • pp.155-161
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    • 2017
  • This paper presents a new nonmechanical rehabilitation system driven by magnetic force. Typically, finger rehabilitation mechanisms are complex mechanical systems. The proposed method allows wireless operation, a simple configuration, and easy installation on the hand for active actuation by magnetic force. The system consists of a driving coil, driving magnets (M1), and auxiliary magnets (M2 and M3), respectively, at the finger, palm, and the center of coil. The magnets and the driving coil produce three magnetic forces for an active motions of the finger. During active actuations, magnetic attractive forces between M1 and M2 or between M1 and M3 enhance the flexion/extension motions. The proposed system simply improves the extension motion of the finger using a magnetic system. In this system, the maximum force and angular variation of the extension motion were 0.438 N and $49^{\circ}$, respectively. We analyzed the magnetic interaction in the system and verified finger's active actuation.

A Study on the Design of Electromagnetic Valve Actuator for VVT Engine

  • Park, Seung-hun;Kim, Dojoong;Byungohk Rhee;Jaisuk Yoo;Lee, Jonghwa
    • Journal of Mechanical Science and Technology
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    • 제17권3호
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    • pp.357-369
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    • 2003
  • Electromagnetic valve (EMV) actuation system is a new technology for improving fuel efficiency and at the same time reducing omissions in internal combustion engines. It can provide more flexibility in valve event control compared with conventional variable valve actuation devices. The electromagnetic valve actuator must be designed by taking the operating conditions and engine geometry limits of the internal combustion engine into account. To help develop a simple design method, this paper presents a procedure for determine the basic design parameters and dimensions of the actuator from the relations of the valve dynamics, electromagnetic circuit and thermal loading condition based on the lumped method. To verify the accuracy of the lumped method analysis, experimental study is also carried out on a prototype actuator. It is found that there is a relatively good agreement between the experimental data and the results of the proposed design procedure. Through the whole speed range, the actuator maintains proper performances in valve timing and event control.

초소형 로봇을 이용한 점도성 유체의 혼합 효율 향상 (Enhancement of Mixing Performance in Viscous Liquid Using an Electromagnetically Driven Microrobot)

  • 송현석;박유나;정상국
    • 한국가시화정보학회지
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    • 제16권2호
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    • pp.53-58
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    • 2018
  • This paper presents an electromagnetically driven microrobot for the enhancement of mixing performance in high viscous liquid media such as blood and bone marrow. First, an electromagnetic system was fabricated, and the magnetic flux density generated from the system was compared with the theoretical value. Second, the reciprocating motion of the microrobot was demonstrated in microchannel using electromagnetic system. As a proof of concept, the mixing performance by the electromagnetically driven microrobot in high viscous liquid was investigated using safranin solution. As a result, it was completely mixed within 140 s with the reciprocating motion of the microrobot while it took 1680 s for natural diffusion. In addition, the mixing efficiency was quantitatively evaluated through a mixing index obtained by an image analysis. The proposed method provides not only wireless actuation of a microrobot with a simple design but also high mixing performance in variety of high viscous liquid media.

KSR-III 김발엔진 구동 시스템의 전자파 환경시험

  • 이희중;박문수;민병주
    • 항공우주기술
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    • 제2권1호
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    • pp.153-163
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    • 2003
  • 전자 장비들은 전자파 간섭을 통해 다른 시스템에 영향을 주어서 오작동을 야기할 수도 있고 혹은 다를 시스템에 의해 자신이 오작동을 일으킬 수도 있다. 따라서 전자 장비들은 다른 시스템이 오작동을 일으키지 않는 범위에서 전자파 간섭을 주고 다른 시스템에서 전자파 간섭을 일으켜도 오작동을 일으키지 않도록 설계되어야 한다. 전자 장비들이 이러한 조건을 만족하는지를 확인하기 위해서는 전자파 환경시험을 하여야 한다. 본 논문에서는 KSR-III 김발엔진 구동 시스템에 있는 전자 장비들의 전자파 환경 규격과 시험 절차 및 결과를 소개하고자 한다.

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Design and Fabrication of Miniaturized Optical Chopper Operated by Electromagnetic Actuation

  • Kim, Ho Won;Min, Seong Ki;Choi, Young Chan;Kong, Seong Ho
    • 센서학회지
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    • 제23권3호
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    • pp.165-169
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    • 2014
  • An existing infrared (IR) analysis system is generally composed of infrared source, IR focusing lenses, IR detector, and optical chopper. An optical chopper is widely used in combination with lock-in amplifier to improve the signal-to-noise ratio by periodically interrupting incident light beam. During recent years, a few researches on miniaturized optical chopper have been reported to apply to micro-scaled optical systems. In this paper, a micro optical chopper operated by electromagnetic actuation is proposed and applied to a miniaturized micro-scaled optical system operating in IR spectral range. Additionally, the fabrication method of the proposed micro chopper is demonstrated. The proposed micro optical chopper is composed of the polydimethylsiloxane (PDMS) membrane, solenoid, and permanent magnet. The permanent magnet is bonded on the PDMS membrane using an ultraviolet-activated adhesive. The operation of the chopper is based on the attractive and repulsive forces between permanent magnet and solenoid induced by an electrical current flowing through the solenoid. The fabricated micro optical chopper could operate up to 200 Hz of frequency. The maximum operating distance of the chopper with 7mm diameter membrane was $750{\mu}m$ at 100 Hz of frequency.

MEMS 기술 기반 이식형 청각 장치용 전자기 엑츄에이터의 소형화 및 최적화 (Miniaturization and Optimization of Electromagnetic Actuators for Implantable Hearing Device Based on MEMS Technology)

  • 김민규;정용섭;조진호
    • 센서학회지
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    • 제27권2호
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    • pp.99-104
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    • 2018
  • A micro electromagnetic actuator with high vibration efficiency is proposed for use in an implantable hearing device. The actuator, which can be implanted in the middle ear, consists of membranes based on the stainless steel 304 (SUS-304), and other components. In conventional actuators, in which a thick membrane and a silicone elastomer are used, the size reduction was difficult. In order to miniaturize the size of the actuator, it is necessary to reduce the size of the actuation potion that generates the driving force, resulting in reduction of the electromagnetic force. In this paper, the electromagnetic actuator is further miniaturized by the metal membrane and the vibration amplitude is also optimized. The actuator designed according to the simulation results was fabricated by using micro-electro-mechanical systems (MEMS) technology. In particular, a $20{\mu}m$ thick metal membrane was fabricated using the erosion process, which reduced the length of the actuator by more than $400{\mu}m$. In the experiments, the vibration displacement characteristics of the optimized actuator were above 400 nm within the range of 0.1 to 1 kHz when a current of $1mA_{rms}$ was applied to the coil.

소형 및 저비용화를 위한 전자석-스프링 구동장치 연구 (A Study on Electromagnetic-Spring Actuator for Low Cost Miniature Actuators)

  • 김세웅;이창섭;최현영
    • 한국군사과학기술학회지
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    • 제22권3호
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    • pp.392-400
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    • 2019
  • This paper provides a fin actuation system of missile based on electromagnetic-spring mechanism to miniaturize the system and lower the cost. Compared with proportional electro-mechanical actuators, the output of Electromagnetic-Spring Actuators(EMSA) has two or three discrete states, but the mechanical configuration of EMSA is simple since it does not need power trains like gears. The simple mechanism of EMSA makes it easy to build small size, low cost, and relatively high torque actuators. However, fast response time is required to improve the dynamic performance and accuracy of missiles since bang-off-bang operation of EMSA affects the flight performance of missile. In this paper the development of EMSA including parameter optimization and mathematical modeling is described. The simulation results using Simulink and experimental test results of prototype EMSAs are presented.