• 제목/요약/키워드: HIL (Hardware-in-the-loop)

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하이브리드 자동차 구동 특성 분석을 위한 HIL 방식의 구현 (Implementation of HIL Method to Analyze Driving Characteristic of Hybrid Electric Vehicle)

  • 오성철
    • 한국실천공학교육학회논문지
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    • 제3권2호
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    • pp.100-105
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    • 2011
  • HIL(Hardware-in-the-Loop) 개념을 적용하면 하이브리드 자동차용 부품의 자동차 환경에서의 특성을 부품을 차량에 장착하지 않고도 평가 할 수 있게 된다. 본 논문에서는 특정 전동기를 하이브리드 자동차용 전동기로 사용하였을 경우 자동차의 구동 특성을 분석할 수 있는 HIL 방식을 구현하기 위한 부품 특성 시험. 구동특성 시뮬레이션, 장치 구성 방법을 설명한다. 시험장치는 자동차 시뮬레이터, 부하장치로 구성되며 시뮬레이션에서 사용된 차량제어기를 직접 차량제어기로 사용하게 된다. 부하장치는 차량의 동적 특성을 모의하게 된다. 특히 기존의 차량의 관성을 모의하기 위한 기계적 관성부하를 사용하지 않고 부하장치를 능동적으로 제어 하여 차량에 적용되었을 경우의 전동기 특성을 구할 수 있다. 시험 전동기가 병렬방식 하이브리드 자동차에 적용되었을 경우의 전동기의 실제 특성을 구할 수 있다. 제안된 방식은 하이브리드 자동차의 구동 특성을 교육하기 위한 교육매체로 사용 될 수 있다.

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Road-friendliness of Fuzzy Hybrid Control Strategy Based on Hardware-in-the-Loop Simulations

  • Yan, Tian Yi;Li, Qiang;Ren, Kun Ru;Wang, Yu Lin;Zhang, Lu Zou
    • Journal of Biosystems Engineering
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    • 제37권3호
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    • pp.148-154
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    • 2012
  • Purpose: In order to improve road-friendliness of heavy vehicles, a fuzzy hybrid control strategy consisting of a hybrid control strategy and a fuzzy logic control module is proposed. The performance of the proposed strategy should be effectively evaluated using a hardware-in-the-loop (HIL) simulation model of a semi-active suspension system based on the fuzzy hybrid control strategy prior to real vehicle implementations. Methods: A hardware-in-the-loop (HIL) simulation system was synthesized by utilizing a self-developed electronic control unit (ECU), a PCI-1711 multi-functional data acquisition board as well as the previously developed quarter-car simulation model. Road-friendliness of a semi-active suspension system controlled by the proposed control strategy was simulated via the HIL system using Dynamic Load Coefficient (DLC) and Dynamic Load Stress Factor (DLSF) criteria. Results: Compared to a passive suspension, a semi-active suspension system based on the fuzzy hybrid control strategy reduced the DLC and DLSF values. Conclusions: The proposed control strategy of semi-active suspension systems can be employed to improve road-friendliness of road vehicles.

자동변속기용 임베디드 시스템 성능 시험을 위한 Hardware-in-the Loop 시뮬레이터 구축 (Development of Hardware-in-the-Loop Simulator for Testing Embedded System of Automatic Transmission)

  • 장인규;서인근;전재욱;황성호
    • 제어로봇시스템학회논문지
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    • 제14권3호
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    • pp.301-306
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    • 2008
  • Drivers are becoming more fatigued and uncomfortable with increase in traffic density, and this condition can lead to slower reaction time. Consequently, they may face the danger of traffic accidents due to their inability to cope with frequent gear shifting. To reduce this risk, some drivers prefer automatic transmission (AT) over manual transmission (MT). The AT offers more superior drivability and less shifting shock than the MT; therefore, the AT market share has been increasing. The AT is controlled by an electronic control unit (ECU), which provides better shifting performance. The transmission control unit (TCU) is a higher-value-added product, so the companies that have advanced technologies end to evade technology transfer. With more cars gradually using the ECU, the TCU is expected to be faster and more efficient for organic communication and arithmetic processing between the control systems than the l6-bit controller. In this paper, the model of an automatic transmission vehicle using MATLAB/Simulink is developed for the Hardware in-the-Loop (HIL) simulation with a 32-bit embedded system, and also the AT control logic for shifting is developed by using MATLAB/Simulink. The developed AT control logic, transformed automatically by real time workshop toolbox, is loaded to a 32-bit embedded system platform based on Freescale's MPC565. With both vehicle model and 32-bit embedded system platform, we make the HIL simulation system and HIL simulation of AT based on real time operating system (RTOS) is performed. According to the simulation results, the developed HIL simulator will be used for the performance test of embedded system for AT with low cost and effort.

분산제어 기반 직류 마이크로그리드 전력관리시스템의 HIL 시뮬레이션 적용 연구 (Development of Hardware In-the-Loop Simulation System for Testing Power Management of DC Microgrids Based on Decentralized Control)

  • 투딘두;리덕중;이동춘
    • 전력전자학회논문지
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    • 제24권3호
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    • pp.191-200
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    • 2019
  • This study proposes a hardware-in-the-loop simulation (HILS) system based on National Instruments' PXI platform to test power management and operation strategies for DC microgrids (MGs). The HILS system is developed based on the controller HIL prototype, which involves testing the controller board in hardware with a real-time simulation model of the plant in a real-time digital simulator. The system provides an economical and effective testing function for research on MG systems. The decentralized power management strategy based on the DC bus signaling method for DC MGs has been developed and implemented on the HILS platform. HILS results are determined to be similar to those of the off-line simulation in PSIM software.

HIL을 이용한 터보과급기 승용 디젤 엔진의 과도 성능 예측 (Prediction of the Transient Performance of the Passenger Diesel Engine with Turbocharger using HIL)

  • 정진은;진영욱;정동영;정재우
    • 한국자동차공학회논문집
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    • 제17권5호
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    • pp.127-132
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    • 2009
  • The transient performance of the passenger diesel engine equipped with the variable geometry turbocharger was simulated using HIL(hardware-in-the-loop) system. The system consists of engine model as software, and the turbocharger test bench as hardware. The engine model is mean value model which is programmed by the Simulink of the Mathworks. The turbocharger test bench is composed of a blower, some sensors, and DAQ boards. A real time simulation is possible since the operating system based on the real time is included. The results show the good response for the transient characteristics. Therefore this HIL system can be used for development of the new turbocharger effectively.

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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실시간 Hardware-in-the-Loop 시뮬레이션을 이용한 반능동 현가시스템 특성 평가 (A Strategy to Evaluate Semi-Active Suspension System using Real-Time Hardware-in-the-Loop Simulation)

  • 최규재;노기한;유영면;김혁
    • 한국자동차공학회논문집
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    • 제9권6호
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    • pp.186-194
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    • 2001
  • To meet the challenge of testing increasingly complex automotive control systems, the real-time hardware-in-the-loop(HIL) simulation technology has been developed. In this paper, a strategy for evaluation of semiactive suspension systems using real-time HIL simulation is presented. A multibody vehicle model is adopted to simulate vehicle dynamic motions accurately. Accuracy of the vehicle simulation results is compared to that of the real vehicle field test and proven to be very accurate. The controller and stepping motor to adjust semi-active damper stage are equipped as external hardwares and connected to the real-time computer which has vehicle dynamic model. Open and closed loop test methods are used to evaluate a controlled suspension system and the system's operations are verified it is found that the proposed evaluation methods can be used well for the verification of semi-active suspension systems.

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풍력발전기 제어시스템 성능평가를 위한 실시간 처리 기반의 Hardware-In-Loop 시뮬레이터 개발 (Development of Real-time based Hardware-In-Loop Simulator for performance evaluation of wind turbine control system)

  • 김대진;유경상;김병기;장문석;고희상;유철
    • 한국산학기술학회논문지
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    • 제18권10호
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    • pp.794-805
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    • 2017
  • 본 논문에서는 풍력발전기의 제어시스템에 대한 성능평가를 위한 실시간 처리 기반의 Hardware-In-Loop(HIL) 시뮬레이터와 안정적으로 운용할 수 있는 시스템 제어 알고리즘을 제시한다. 기존의 수행된 연구는 모터와 발전기가 결합되어 동력이 전달되는 구조로서, 소형풍력발전기의 발전기 토크와 전력변환장치의 대한 특성분석으로 그 시험 범위가 제한적이나, 제안하는 실시간 처리 기반의 풍력발전기 시뮬레이터를 통해서 정상운전과 비상운전을 포함하여 제어시스템의 알고리즘과 하드웨어 요소에 대한 시험 성능평가가 가능하다. 한편, 제안하는 시뮬레이터는 세부적으로 하드웨어와 동기화되어 운영 될 수 있도록 MATLAB, CODER 그리고 PLC Library를 활용하여 동적모델과 제어시스템을 포함한 실시간 처리 기반의 풍력발전기 모듈, 바람 데이터를 생성/처리하는 모듈, 전력계통 모듈 그리고 전체 시뮬레이터의 운용을 위한 'Host PC'로 구성된다. 실제 풍력발전기가 설치되는 환경을 기반으로 외부적/내부적인 요소를 변수로 다양한 시나리오에 대한 시험을 수행하여, 풍력발전기 제어시스템의 성능평가를 통하여 본 논문에서 제시한 HIL-시뮬레이터의 우수성과 효용성을 입증한다.