• Title/Summary/Keyword: Virtual Impedance

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가상임피던스를 이용한 원격 이동로봇의 장애물회피 (Obstacle avoidance of Mobile Robot with Virtual Impedance)

  • 진태석
    • 한국지능시스템학회논문지
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    • 제19권4호
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    • pp.451-456
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    • 2009
  • 본 논문에서는 Virtual Mass-Spring-Damper 모델을 사용하여 이동로봇과 주위 물체와의 관계를 모델링하고 장애물의 충돌벡터를 검출하여 가상의 척력을 발생시키는 가상 임피던스 방법을 제안하였다. 이를 위하여 원격지 슬래이브 로봇의 주위 환경 정보 즉, 이동 로봇과 장애물과의 거리 및 접근 속도 등의 정보를 조작자에게 입체적으로 전달하기 위해 조이스틱의 각축에 연결된 모터를 이용하여 힘을 발생시킬 수 있도록 한다. 제안한 방법의 실제 로봇적용에 앞서 이동로봇의 장애물 회피 시뮬레이션을 통하여 알고리즘을 검증하였다.

루드-후르비쯔 (Routh-Hurwitz) 안정성 판별법을 이용한 인간의 임피던스가 포함된 햅틱 시스템의 안정성 분석 (Stability Analysis of a Haptic System with a Human Impedance model using the Routh-Hurwitz Criterion)

  • 이경노
    • 한국산학기술학회논문지
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    • 제15권4호
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    • pp.1813-1818
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    • 2014
  • 햅틱 시스템에는 사용자인 인간이 항상 포함되므로, 인간 임피던스에 의한 시스템 안정성 분석이 필요하다. 특히, 일차 홀드 방식의 햅틱 시스템에 대한 인간 임피던스의 안정성 영향 분석이 미진하다. 본 논문에서는 선형 2차 시스템으로 모델화된 인간의 임피던스 모델을 포함하는, 일차 홀드 방식의 햅틱 시스템에 대한 안정성을 루드-후르비쯔 (Routh-Hurwitz)안정성 판별법을 이용하여 해석했다. 가상 벽 모델인 가상 스프링 상수 ($K_w$)의 안정성 영역과 인간 임피던스의 질량 ($M_h$), 댐핑 ($B_h$),그리고 스프링 상수 ($K_h$)와의 관계를 루드-후르비쯔 안정성 판별법을 이용하여 분석한 결과, 스프링 상수 ($K_h$)가 일정할 때 가상 스프링 상수 ($K_w$)는 인간 임피던스의 질량 ($M_h$)과 댐핑 ($B_h$)의 제곱근에 비례했다. 또한 인간 임피던스의 질량 ($M_h$)또는 댐핑 ($B_h$)가 일정할 때 가상 스프링 상수 ($K_w$)는 스프링 상수 ($K_h$)의 0.48배만큼 감소했다. 이를 종합하여 $K_w{\leq}54413{\sqrt{(M_h+M_d)(B_h+B_d)}}-0.486K_h$의 모델을 제안했고, 이론 값들과 제시된 모델로부터 계산된 값을 비교한 결과 평균적인 상대오차가 0.5%로 작게 나타났다. 제시된 모델이 인간 임피던스 모델과 가상 스프링 상수와의 관계를 비교적 잘 표현하고 있다.

가변주파수 및 임펄스 전류를 이용한 과도접지임피던스 분석 (An Analysis Method for the Transient Ground Impedance Using Variable Frequency and Lightning Impulse Current)

  • 엄주홍;조성철;이태형
    • 조명전기설비학회논문지
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    • 제22권6호
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    • pp.100-108
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    • 2008
  • 접지전극의 형태, 크기, 재질 및 임펄스전류의 형상에 따라 변화하는 과도접지임피던스는 접지시스템의 성능에 중요한 영향을 미친다. 본 논문은 기존의 실효임펄스임피던스가 실제 과도접지임피던스를 얼마나 효과적으로 나타내고 있는가에 대한 분석과 보다 효과적인 과도접지임피던스 평가방법에 대하여 실험적인 결과를 제시하였다. 실험에 사용된 접지전극은 저항성분과 인덕턴스를 포함한 모의 접지전극과 1[m] 탄소접지봉, 9[m] 일반동봉 그리고 40[m] 매설지선이며, 가변주파수 전류와 임펄스전류에 의한 접지임피던스를 각각 측정하였다. 각각의 값을 비교 했을 때 기존의 실효임펄스임피던스의 값보다는 전압의 최대 값과 전류의 최대 값을 이용하여 과도접지임피던스를 구한 임피던스 값($Z_1$)이 등가주파수에 해당하는 가변주파수 전류에 의해 구해진 접지임피던스에 근접함을 확인하였다.

일차 홀드 방식의 반력 구현 시스템에 대한 안정성 해석 (Stability Analysis of a Haptic System with a First-Order-Hold Method)

  • 이경노
    • 제어로봇시스템학회논문지
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    • 제20권4호
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    • pp.389-394
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    • 2014
  • This paper presents the effect of a reflective force computed from a first-order-hold method on the stability of a haptic system. A haptic system is composed of a haptic device with a mass and a damper, a virtual spring, a sampler and a sample-and-hold. The boundary condition of the maximum virtual stiffness is analytically derived by using the Routh-Hurwitz criterion and the condition shows that the maximum virtual stiffness is proportional to the square root of the mass and the damper of a haptic device and also is inversely proportional to the sampling time to the power of three over two. The effectiveness of the derived condition is evaluated by the simulation. When the reflective forces are computed by using the first-order-hold method, the maximum available stiffness to guarantee the stability is increased several hundred times as large as when the zero-order-hold method is applied.

Study on the Influence of Distribution Lines to Parallel Inverter Systems Adopting the Droop Control Method

  • Zhang, Xuan;Liu, Jinjun;You, Zhiyuan;Liu, Ting
    • Journal of Power Electronics
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    • 제13권4호
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    • pp.701-711
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    • 2013
  • This paper takes into account the influence of the different impedances of distribution lines on power distribution among inverters when the inverters are paralleled with the droop control method. The impact of distribution lines on the power distribution of inverters can be divided into two aspects. Firstly, since the distributed generators are in low voltage grids, there is resistive impedance in the distribution lines, which will cause control coupling and reduce system stability. The virtual negative resistive impedance of inverters is adopted in this paper to neutralize the resistive element of distribution lines and thus make the distribution line impedance purely inductive. Secondly, after solving the resistive impedance problem, the difference in the inductive impedance value of distribution lines due to the low density of distributed generators will cause an unequal share of reactive power. With regards to this problem, modification is put forward for the droop control strategy to share the reactive power equally. The feasibility of the design is validated by simulation and experimental results.

태양전지 가상구현 시스템[50W]의 병렬연결 출력특성에 대한 분석 (Analysis of Parallel Characteristics for Virtual Implement of 50[W]Solar Cell modules)

  • 이병인;정병환;전윤석;최규하
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2003년도 춘계학술대회 논문집 전기기기 및 에너지변환시스템부문
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    • pp.362-364
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    • 2003
  • Generally, photovoltaic system is composed a number of solar cells array. so, virtual implementation module for solar cell array is needed Parallel connection each module for extract the power. A desirable characteristic of a parallel supply system is that individual converters share the load current equally and stably. The current sharing(CS) can be implemented using two approaches. The first one, known as a droop method, relies on the high output impedance of each converter. and The second approach, known as active current-sharing techniques. In this paper, analyze for better control logic of parallel connecting virtual implements of solar cell at using droop method.

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햅틱인터페이스를 이용한 나노스케일 가상표면에서의 나노리소그래피 (Nanolithography Using Haptic Interface in a Nanoscale Virtual Surface)

  • 김성관
    • 한국표면공학회지
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    • 제39권2호
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    • pp.64-69
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    • 2006
  • Nanoscale task such as nanolithography and nanoindenting is a challenging work that is beyond the capabilities of human sensing and precision. Since surface forces and intermolecular forces dominate over gravitational and other more intuitive forces of the macro world at the nanoscale, a user is not familiar with these novel nanoforce effects. In order to overcome this scaling barrier, haptic interfaces that consist of visual and force feedback at the macro world have been used with an Atomic Force Microscope (AFM) as a manipulator at the nanoscale. In this paper, a nanoscale virtual coupling (NSVC) concept is introduced and the relationship between performance and impedance scaling factors of velocity (or position) and force are explicitly represented. Experiments have been performed for nanoindenting and nanolithography with different materials in the nanoscale virtual surface. The interaction forces (non contact and contact nanoforces) between the AFM tip and the nano sample are transmitted to the operator through the haptic interface.

가상현실 역감구현을 위한 알고리즘과 장치개발 (The Development of Device and the Algorithm for the Haptic Rendering)

  • 김영호;이경백;김영배
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2000년도 추계학술대회 논문집
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    • pp.106-109
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    • 2000
  • The virtual reality - haptic device is developed for the purpose used in the work that human cannot approach and that need elaborate exercises. To render haptic, the total system is constituted master, haptic device, and slave, remote manipulator. Human operates the remote manipulator. Human operates the remote manipulator relying on the hapti devices and stereo graphic. And then the force and scene of the remote manipulator is fed-back from each haptic devices and virtual devices. The feedback information gets system gain exactly. The system gain provides the most exact haptic and virtual devices. The feedback information gets system gain exactly. The system gain provides the most exact haptic and scene to human by the location, the graphic rendering and the haptic rendering algorithm on real-time. In this research, 3D haptic device is developed for common usage and make human feel the haptic when human contacts virtual object rendered by computer graphic. The haptic device is good for tracing location and producing devices because of the row structure. Also, openGL and Visual Basic is utilized to the algorithms for haptic rendering. The haptic device of this research makes the interface possible not only with virtual reality but also with the real remote manipulator.

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Internet-based Real-time Obstacle Avoidance of a Mobile Robot

  • Ko Jae-Pyung;Lee Jang-Myung
    • Journal of Mechanical Science and Technology
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    • 제19권6호
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    • pp.1290-1303
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    • 2005
  • In this research, a remote control system has been developed and implemented, which combines autonomous obstacle avoidance in real-time with force-reflective tele-operation. A tele-operated mobile robot is controlled by a local two-degrees-of-freedom force-reflective joystick that a human operator holds while he is monitoring the screen. In the system, the force-reflective joystick transforms the relation between a mobile robot and the environment to the operator as a virtual force which is generated in the form of a new collision vector and reflected to the operator. This reflected force makes the tele-operation of a mobile robot safe from collision in an uncertain and obstacle-cluttered remote environment. A mobile robot controlled by a local operator usually takes pictures of remote environments and sends the images back to the operator over the Internet. Because of limitations of communication bandwidth and the narrow view-angles of the camera, the operator cannot observe shadow regions and curved spaces frequently. To overcome this problem, a new form of virtual force is generated along the collision vector according to both distance and approaching velocity between an obstacle and the mobile robot, which is obtained from ultrasonic sensors. This virtual force is transferred back to the two-degrees-of-freedom master joystick over the Internet to enable a human operator to feel the geometrical relation between the mobile robot and the obstacle. It is demonstrated by experiments that this haptic reflection improves the performance of a tele-operated mobile robot significantly.

모바일 로봇의 충돌회피 알고리즘 개발 (A Real-Time Collision-Free Trajectory Planning and Control for a Car-Like Mobile Robot)

  • 노연 후 콩;김기복;조상영
    • 한국산업융합학회 논문집
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    • 제18권2호
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    • pp.99-109
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    • 2015
  • This study proposes a new approach to analyze the impedance and the elasticity of a serial chain of spring-damper system, areal-time collision-free trajectory generation algorithm is proposed. The reference points on a trajectory connected by the spring-damper system have a mechanism for self-position adjustment to solve a collision problem by the impedance, and the local adjustment of each reference point is propagated through the elasticity to a real robot at the end of the spring-damper system. As a result, the overall trajectory consisting of the reference points becomes free of collision with environmental obstacles and efficient having the shortest distance as possible. In this process,, the reference points connected by the spring-damper system take role of virtual robot as global guidance for a real robot, and a cooperative is carried out by the system of robots. A control technology is proposed to implement for mobile robot.