• 제목/요약/키워드: Hardware in the loop test

검색결과 155건 처리시간 0.03초

브레이크HILS를 이용한 능동 요모멘트 제어 알고리즘의 평가 (Evaluation of A Direct Yaw Moment Control Algorithm by Brake Hardware-In-The -Loop Simulation)

  • 류제하;김호수
    • 한국자동차공학회논문집
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    • 제7권8호
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    • pp.172-179
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    • 1999
  • This paper presents a simple but effective DYC algorithm which enhances vehicle lateral stability by using an anti=lock brake system (ABS). In the proposed algorithm, only the front outer wheel is controlled during cornering maneuver instead of controlling all four wheels because the wheel has the largest role in DYC and it is easy and simple to control the only one wheel. An ABS Hardware - In -The -Loop Simulation ( HILS) system that may be used to realistically test real vehicle dynamic behavior in a lab is used for evaluating the proposed DYC algorithm in severe situations where a vehicle is destabilized without DYC . The HILS results show that the proposed DYC algorithm has the potential of maintaining vehicle stability in some dangerous situations.

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실시간 모의시험을 통한 리밋 사이클 해석 결과 분석 (An Evaluation on the Limit cycle Analysis Methods using the Hardware in the Loop Simulation)

  • 전상운
    • 항공우주기술
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    • 제11권1호
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    • pp.145-157
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    • 2012
  • 상평면상에서 추력기를 사용하는 자세제어 시스템의 리밋 사이클을 해석하는 새로운 기법이 논문에 의해서 제안되었다. 그러나 이것은 소프트 시뮬레이션상에서 Haloulakos 방식보다 제안 방식이 정확함을 보였지만, 실제 시스템으로 검증하지는 못하였다. 그래서 저자의 제안 방식을 KSLV-I 추력기 자세제어 시스템에 대한 실시간 모의시험으로 검증하고, 리밋 사이클 해석에 대하여 실시간 모의시험 결과와 이론적으로 구한 값을 비교/분석하였다.

합성환경 하에서의 수중운동체 HILS/MILS 구현 기법 연구 (A Study on Implementation of an Underwater Vehicle HILS/MILS System in Synthetic Environment)

  • 남경원
    • 한국군사과학기술학회지
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    • 제5권2호
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    • pp.132-148
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    • 2002
  • In this paper, development procedures of an Underwater Vehicle HILS/MILS System in SE(Synthetic Environment) are described. As this System is developed, we can obtain the more powerful tool which can be used to test and verify operational logics and algorithms of an Underwater Vehicle as well as its hardware in various tactical situations.

차간거리제어 Hardware-in-the-Loop 시뮬레이션 (Hardware-in-the-Loop Simulation of a Vehicle-to-Vehicle Distance Control System)

  • 문일기;이찬규;이경수;권영도
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집B
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    • pp.741-746
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    • 2001
  • This paper presents an investigation of a vehicle-to-vehicle distance control using a Hardware-in-the-Loop Simulation(HiLS) system. Since vehicle tests are costly and time consuming, how to establish a efficient and low cost development tool is an important issue. The HiLS system consists of a stepper motor, an electronic vacuum booster, a controller unit and two computers which are used to form real time simulation and to save vehicle parameters and signals of actuator through a CAN(Controller Area Network). Adoption of a CAN for communication is a trend in the automotive industry. Since this environment is the same as that of a real vehicle, a distance control logic verified in laboratory can be easily transfered to a test vehicle.

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차간거리 경보시스템의 HiLS 구현 (An Experimental Investigation of a Collision Warning System for Automobiles using Hardware-in-the-Loop Simulations)

  • 송철기;김성하;이경수
    • 한국자동차공학회논문집
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    • 제6권5호
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    • pp.222-227
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    • 1998
  • Collision warning systems have been an active research and development area as the interests and demands for ASV's (Advanced Safety Vehicles) have increased. This paper presents an experimental investigation of a collision warning system for automobiles. A collision warning HiLS(Hardware-in-the-Loop Simulation) system has been designed and used to test the collision warning algorithm, radar sensors, and warning displays under realistic operating conditions in the laboratory. the collision warning algorithm is operated by a warning index, which is a function of the warning distance and the braking distance. The computer calculates velocities of the preceding vehicle and following vehicle, relative distance and relative velocity of the vehicles using vehicle simulation models. The relative distance and the relative velocity are applied to the vehicle simulator controlled by a DC motor.

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굴삭기용 Hardware In the Loop System(HILS) 개발 (Development of Hardware In the Loop System(HILS) for Hydraulic Excavator)

  • 임태형;조현철;안태규;양순용;이홍선
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2004년도 추계학술대회 논문집
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    • pp.468-473
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    • 2004
  • This paper deal with basic concept of Hardware In the Loop System(HILS) for hydraulic excavator. Hydraulic excavator has many nonlinearities because of P-Q diagram, dead zone and saturation of valve, single acting cylinder, heavy manipulator. So, actual test is needed when new component or control algorithm is developed but many restrictions exist. Hydraulic circuit of excavator is too complex to model mathematically but dynamic equation of manipulator has made good progress in previous studies. Basic concept of HILS and AMESim model of hydraulic components is contained in this paper.

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ABS를 위한 HIL시뮬레이터 개발 (Development of Hardware-In-The-Loop Simulator for ABS)

  • 서명원;김석민;정재현;석창성;김영진;이선일;이재천
    • 한국자동차공학회논문집
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    • 제6권2호
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    • pp.155-167
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    • 1998
  • The prevalence of microprocessor-based controllers in automotive systems has greatly increased the meed for tools which can be used to validate and test control systems over their full range of operation. The objective of this paper is to develop a real time simulator of an anti-lock braking system and the methodology of using hardware-in-the-loop simulation based on a personal computer. By use of this simulator, the analyses of a commercial electronic control unit as well as the validation of the developed control logics for ABS were performed successfully. The simulator of this research can be traction applied to development of more advanced control system, such as traction control systems, vehicle dynamic control system and so forth.

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ABS 와 TCS 를 위한 HIL 시뮬레이터 개발에 관한 연구 (Development of Hardware-in-the loop Simulator for ABS/TCS)

  • 이한주;박윤기;서명원
    • 한국정밀공학회지
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    • 제16권5호통권98호
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    • pp.83-90
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    • 1999
  • The prevalence of microprocessor-based controllers in automotive system has greatly increased the need for tools which can be used to validate and test control system over their full range of operation. The objective of this paper is to develop a real time simulator of an anti-lock braking system and traction control system by the methodology of using hardware-in-the-loop simulation based on a personal computer. By use of this simulator, the analyses of commercial electronic control units and components for ABS/TCS were performed successfully. The simulator of this research can be applied to development of more advanced control system(such as vehicle dynamic control system) and other automotive system.

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TCS를 위한 HIL 시뮬레이터 개발에 관한 연구 (Development of Hardware-in-the-loop Simulator for TCS)

  • 서명원;이한주;박윤기
    • 한국자동차공학회논문집
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    • 제7권5호
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    • pp.194-205
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    • 1999
  • The prevalence of microprocessor-based controllers in automotive systems has greatly increased the need for tools which can be used to validate and test control systems over their full range of operation. The objective of this paper is to develop a real time simulator of traction control system by the methodology of using hardware-in-loop simulation based on a personal computer. By use of this simulator, the analysis of commercial electronic control units and components for TCS were performed successfully. The simulator of this research can be applied to development of more advanced control systems(suck as vehicle dynamics control system) and other automotive system.

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Design and Temporal Analysis of Hardware-in-the-loop Simulation for Testing Motor Control Unit

  • Choi, Chin-Chul;Lee, Kang-Seok;Lee, Woo-Taik
    • Journal of Electrical Engineering and Technology
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    • 제7권3호
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    • pp.366-375
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    • 2012
  • This paper describes a design and temporal analysis of a hardware-in-the-loop (HIL) simulation environment for testing a motor control unit (MCU). The design concepts and main characteristics including unavoidable time delays of each component module are described. From temporal analysis results according to the module integration method, an appropriate solution is proposed to fix and minimize time delays. In order to verify the effectiveness of the proposed solution, the HIL test results are compared with the results of experiments and an offline simulation.