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

검색결과 334건 처리시간 0.035초

회생제동 전자제어 유압모듈을 이용한 하이브리드 차량의 에너지 회수 알고리즘 개발 (Development of Energy Regeneration Algorithm using Electro-Hydraulic Braking Module for Hybrid Electric Vehicles)

  • 여훈;김현수;황성호
    • 유공압시스템학회논문집
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    • 제5권4호
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    • pp.1-9
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    • 2008
  • In this paper, an energy regeneration algorithm is proposed to make the maximum use of the regenerative braking energy for a parallel hybrid electric vehicle(HEV) equipped with a continuous variable transmission(CVT). The regenerative algorithm is developed by considering the battery state of charge(SOC), vehicle velocity and motor capacity. The hydraulic module consists of a reducing valve and a power unit to supply the front wheel brake pressure according to the control algorithm. In order to evaluate the performance of the regenerative braking algorithm and the hydraulic module, a hardware-in-the-loop simulation (HILS) is performed. In the HILS system, the brake system consists of four wheel brakes and the hydraulic module. Dynamic characteristics of the HEV are simulated using an HEV simulator. In the HEV simulator, each element of the HEV powertrain such as internal combustion engine, motor, battery and CVT is modelled using MATLAB/$Simulink^{(R)}$. In the HILS, a driver operates the brake pedal with his or her foot while the vehicle speed is displayed on the monitor in real time. It is found from the HILS that the regenerative braking algorithm and the hydraulic module suggested in this paper provide a satisfactory braking performance in tracking the driving schedule and maintaining the battery state of charge.

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Test Platform Development of Vessel's Power Management System Using Hardware-in-the-Loop Simulation Technique

  • Lee, Sang-Jung;Kwak, Sang-Kyu;Kim, Sang-Hyun;Jeon, Hyung-Jun;Jung, Jee-Hoon
    • Journal of Electrical Engineering and Technology
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    • 제12권6호
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    • pp.2298-2306
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    • 2017
  • A PMS (Power Management System) controls vessel's power systems to improve the system efficiency and to protect a blackout condition. The PMS should be developed with considering the type and the capacity of the vessel's power system. It is necessary to test the PMS functions developed for vessel's safe operations under various sailing situations. Therefore, the function tests in cooperation with practical power systems are required in the PMS development. In this paper, a hardware-in-the-loop (HIL) simulator is developed for the purposes of the PMS function tests. The HIL simulator can be more cost-effective, more time-saved, easier to reproduce, and safer beyond the normal operating range than conventional off-line simulators, especially at early stages in development processes or during fault tests. Vessel's power system model is developed by using a MATLAB/SIMULINK software and by communicating between an OPAL-RT's OP5600 simulator. The PMS uses a Modbus communication protocol implemented using LabVIEW software. Representative tests of the PMS functions are performed to verify the validity of the proposed HIL-based test platform.

복합 모드형 ER엔진마운트의 성능평가 (II) - HILL를 통한 성능 평가 - (Performance Evaluation of a Mixed-Mode Type ER Engine Mount(II)-Performance Evaluation Via HILS-)

  • 최영태;최승복
    • 대한기계학회논문집A
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    • 제24권9호
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    • pp.2151-2158
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    • 2000
  • This paper presents vibration control performance of a passenger vehicle installed with the mixed-mode type ER engine mounts. The performance is evaluated via hardware-in-the-loop-simulation(HILS) method. As a first step, a dynamic model of a vehicle featuring the ER engine mounts is formulated by taking into account the engine excitation forces. A new type of the fuzzy skyhook controller is then established in order to control both engine and body vibrations. This is accomplished by adopting a weighting parameter between two performance criteria which is to be determined from the fuzzy algorithm. Vertical displacement and acceleration of the engine mount obtained from the HILS method are provided in the frequency domain. In addition, vibration control performance between the conventional hydraulic engine mount and the proposed engine mount is compared in the time and frequency domains.

Way-points 방식과 Event-driven 방식의 운동궤적 모델링 비교 (A Comparison of the Way-points and the Event-points and the Event-driven Dynamic Trajectory Modeling)

  • 김옥휴
    • 한국시뮬레이션학회:학술대회논문집
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    • 한국시뮬레이션학회 1999년도 춘계학술대회 논문집
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    • pp.88-92
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    • 1999
  • As a part of work to simulate electromagnetic environments for Hardware-In-the-Loop(HIL) simulation, the dynamic trajectory is modeled by the Way-points method and the Event-driven method for the aerial and the naval targets. The simulated results show that the Way-points method and the Event-driven method are appropriate to simulate a low speed and a high speed target respectively.

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온/오프라인 시뮬레이션 툴을 이용한 계통연계형 인버터의 LCL 필터 특성 분석비교 (Analytic Comparison of LCL Filter Characteristics of Three-phase Grid-connected Inverter by On/Off-line Simulation Tools)

  • 이강;차한주
    • 한국산학기술학회논문지
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    • 제21권12호
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    • pp.16-22
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    • 2020
  • 본 논문에서는 계통연계형 인버터용 LCL 필터 특성을 학계와 산업계의 대표적인 오프라인, 온라인 시뮬레이션 도구를 적용하여 LCL 필터와 L 필터의 차이점을 비교 분석하였다. 논문의 연구방법은 비교 분석 및 검증 방법을 적용하여 먼저 LCL 필터를 포함한 계통연계형 인버터 시스템의 수학적 분석과 모델링한 후 오프라인 시뮬레이션 도구로 시뮬레이션한 결과를 수학적 이론값과 비교하였으며, 마지막으로 실시간 시뮬레이터를 사용한 실험을 통한 검증과정으로 구성하였다. 3개의 시뮬레이션 툴을 사용하여 LCL 필터를 모델링 및 시뮬레이션하고 LCL 필터의 고주파 고조파에 대해 필터링 효과를 확인하였다. 먼저, LCL 필터의 전달 함수와 관련 수식을 소개하였으며, 이를 바탕으로 보드선도로 그 특성을 분석하였다. 또한 LCL 필터의 매개 변수에 따라 PSIM 및 MATLAB의 오프라인 시뮬레이션과 FFT를 통해 필터 특성을 확인하였다. 마지막으로 실시간 시뮬레이터인 Typhoon HIL402와 DSP 제어기를 연결하여 온라인 시뮬레이션 결과와의 일관성을 확인하였으며 LCL 필터의 필터링 특성을 시험으로 검증하였다.

주입 전압파형의 형상에 따른 고조파 주입 센서리스 기법의 제어 성능 비교 (Comparison of Control Performance according to the Injection Voltage Waveform of the Harmonic Voltage Injection Sensorless Technique)

  • 문경록;이동명
    • 전기전자학회논문지
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    • 제26권1호
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    • pp.43-49
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    • 2022
  • 본 논문은 전동기의 저속 영역 운전의 센서리스 기법으로 적합한 고조파 주입 센서리스 제어기법에서 사인파, 삼각파 및 사각파를 주입하여 인가 전압 파형에 따른 센서리스 성능을 비교한다. 본 연구는 영구자석 전동기의 센서리스 기법에 관한 것이다. 1kHz 주파수를 갖는 여러 모양의 파형을 주입하여, 각 파형에 대한 추정된 각도의 오차량을 비교 분석한다. 실험은 HILS(hardware in the loop simulation) 시스템을 이용하였으며, Hardware는 제어보드이며 실시간 시뮬레이터에는 Simulik로 구현된 인버터와 전동기의 모델이 위치한다. 제어 알고리즘은 FPGA 제어보드로 구현하였으며, 이는 10kHz 주파수의 PWM 인터럽트 서비스 루틴, 고조파 주입 및 위치 검출 센서리스 알고리즘 등을 포함한다. HILS 실험을 통해 사인파, 삼각파 및 사각파 고조파 주입시 센서리스 제어 성능을 비교한다.

전기유압식 브레이크를 장착한 연료전지차량의 회생제동 천이구간 특성해석 (Transient Characteristic Analysis on the Regenerative Braking System of Fuel-cell Electric Vehicle with Electro-Hydraulic Brake)

  • 최정훈;조배균;박진현;황성호
    • 드라이브 ㆍ 컨트롤
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    • 제9권1호
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    • pp.1-9
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    • 2012
  • Nowadays, various researches about eco-friendly vehicles such as hybrid electric vehicle, fuel cell vehicle and electric vehicle have been actively carried out. Since most of these green cars have electric motors, the regenerative energy technology can be used to improve the fuel economy and the energy efficiency of vehicles. The regenerative brake is an energy recovery mechanism which slows a vehicle by converting its kinetic energy into electric energy, which can be either used immediately or stored until needed. This technology plays a significant role in achieving the high energy usage. However, there are some technical problems for controlling the regenerative braking and the electro-hydraulic brake during switching at transient region. In this paper, the performance simulator for fuel-cell vehicle is developed and transient response characteristics of the regenerative braking system are analyzed in the various driving situations. And the hardware-in-the-loop simulation of electro-hydraulic brake is performed to validate the transient characteristics of the regenerative braking system for fuel-cell electric vehicle.

Net-HILS를 이용한 네트워크기반 구동력제어시스템 개발 및 성능평가에 관한 연구 (Development of Network-based Traction Control System and Study its on Performance Evaluation using Net-HILS)

  • 류정환;윤마루;황인용;선우명호
    • 한국자동차공학회논문집
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    • 제14권5호
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    • pp.47-57
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    • 2006
  • This paper presents a network-based traction control system(TCS), where several electric control units (ECUs) are connected by a controller area network(CAN) communication system. The control system consists of four ECUs: the electricthrottle controller, the transmission controller, the engine controller and the traction controller. In order to validate the traction control algorithm of the network-based TCS and evaluate its performance, a Hardware-In-the-Loop Simulation(HILS) environment was developed. Herein we propose a new concept of the HILS environment called the network-based HILS(Net-HILS) for the development and validation of network-based control systems which include smart sensors or actuators. In this study, we report that we have designed a network-based TCS, validated its algorithm and evaluated its performance using Net-HILS.