• Title/Summary/Keyword: Electronic Stability Control (ESC)

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AURIX TC 275에서 멀티코어를 이용한 Electronic Stability Control의 수행시간 최적화 (Processing Time Optimization of an Electronic Stability Control system design Using Multi-Cores for AURIX TC 275)

  • 장홍순;조영환;정구민
    • 한국정보전자통신기술학회논문지
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    • 제14권5호
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    • pp.385-393
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    • 2021
  • 본 논문에서는 차량 멀티코어 프로세서를 통한 ESC(Electronic Stability Control) 시스템을 위한 멀티코어 기반 제어기를 제시한다. 차량용 멀티코어 프로세서와 ESC 시스템의 아키텍처를 고려할 때 ESC 소프트웨어의 전체 수행 시간은 멀티코어에 최적화되어 있다. 일반적으로 차량용 멀티코어 시스템에서는 코어 간 동기화, 멀티코어에 대한 테스크 할당, 코어 종속 변수에 대한 메모리 할당을 고려해야 한다. 본 논문에 사용된 ESC 시스템은 초기화, SlipRatio 계산, YawRate 계산, ABS, 통신으로 구성된다. 제안된 설계 방법을 기반으로 싱글코어 프로세서는 멀티코어 프로세서로 확장된다. ESC 시스템은 기능 모듈 할당, 세마포어, 인터럽트, 코어 별 변수 할당과 같은 멀티코어 최적화 방법을 사용하여 멀티코어 제어기로 재설계된다. 실험 결과로 멀티코어 프로세서의 수행 시간이 싱글코어 프로세서에 비해 59.7% 단축되었다.

중형 상용차량 ESC 평가를 위한 Sine with Dwell Test 제안 (Proposal for Using Sine with Dwell for the Evaluation of ESC for Medium Commercial Vehicles)

  • 권백순;이경수
    • 자동차안전학회지
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    • 제7권2호
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    • pp.32-38
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    • 2015
  • A sine with dwell test is well known as a test scenario for evaluation of performance of electronic stability control(ESC) on passenger vehicles and heavy commercial vehicles. However, when it comes to ESC for medium commercial vehicles, the test scenario has not been established yet. In this paper, the sine with dwell test was modified considering characteristics of medium commercial vehicles. The three main modifications of the original test scenario are the steering angle level, steering frequency, and loading condition of the vehicle. These modifications are derived from simulation study for different medium commercial vehicles. From simulation study, it was shown that the ESC system for medium commercial vehicle is objectively evaluated by the proposed test scenario. A clear improvement on vehicle stability was seen in the results when ESC system was used.

전륜 횡력의 포화를 고려한 ESC와 AFS의 통합 섀시 제어 (Integrated Chassis Control with Electronic Stability Control and Active Front Steering under Saturation of Front Lateral Tire Forces)

  • 임성진
    • 제어로봇시스템학회논문지
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    • 제21권10호
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    • pp.903-909
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    • 2015
  • This article presents an integrated chassis control with electronic stability control (ESC) and active front steering (AFS) under saturation of front lateral tire force. Regardless of the use of AFS, the front lateral tire forces can be easily saturated. Under the saturated front lateral tire force, AFS cannot be effective to generate a control yaw moment needed for the integrated chassis control. In this paper, new integrated chassis control is proposed in order to limit the use of AFS in case the front lateral tire force is saturated. Weighed pseudo-inverse control allocation (WPCA) with variable weight is adopted to adaptively use the AFS. To check the effectiveness of the proposed scheme, simulation is performed on a vehicle simulation package, CarSim. From simulation, the proposed integrated chassis control is effective for vehicle stability control under saturated front lateral tire force.

자세 제어 장치와 능동 후륜 조향을 이용한 최적 요 모멘트 분배 (Optimum Yaw Moment Distribution with Electronic Stability Control and Active Rear Steering)

  • 임성진
    • 제어로봇시스템학회논문지
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    • 제20권12호
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    • pp.1246-1251
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    • 2014
  • This article presents an optimum yaw moment distribution scheme for a vehicle with electronic stability control (ESC) and active rear steering (ARS). After computing the control yaw moment in the yaw moment controller, it should be distributed into tire forces, generated by ESC and ARS. In this paper, yaw moment distribution is formulated as an optimization problem. New objective function is proposed to tune the relative magnitudes of the tire forces. Weighed pseudo-inverse control allocation (WPCA) is adopted to solve the problem. To check the effectiveness of the proposed scheme, simulation is performed on a vehicle simulation package, CarSim. From the simulation, the proposed optimum yaw moment distribution scheme is shown to effective for vehicle stability control.

Evaluation of electronic stability controllers using hardware-in-the-loop vehicle simulator

  • Emirler, Mumin Tolga;Gozu, Murat;Uygan, Ismail Meric Can;Boke, Tevfik Ali;Guvenc, Bilin Aksun;Guvenc, Levent
    • Advances in Automotive Engineering
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    • 제1권1호
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    • pp.123-141
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    • 2018
  • Hardware-in-the-loop (HiL) simulation is a very powerful tool to design, test and verify automotive control systems. However, well-validated and high degree of freedom vehicle models have to be utilized in these simulations in order to obtain realistic results. In this paper, a vehicle dynamics model developed in the Carsim Real Time program environment and its validation has been performed using experimental results. The developed Carsim real time model has been employed in the Tofas R&D hardware-in-the-loop simulator. Experimental and hardware-in-the-loop simulation results have been compared for the standard FMVSS No. 126 test and the results have been found to be in good agreement with each other. Two electronic stability control (ESC) algorithms, named the Basic ESC and the Integrated ESC, taken from the earlier work of the authors have been tested and evaluated in the hardware-in-the-loop simulator. Different evaluation methods have been formulated and used to compare these ESC algorithms. As a result, the Integrated ESC system has been shown superior performance as compared to the Basic ESC algorithm.

메타분석을 이용한 차체자세제어장치(ESC)의 교통안전성 효과분석: 사고율 분석을 중심으로 (Evaluating Traffic Safety Benefits of Electronic Stability Control System Using a Meta Analysis: Focused on Accident Rates)

  • 오민수;윤석민;정은비;오철
    • 대한교통학회지
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    • 제35권4호
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    • pp.307-320
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    • 2017
  • 본 연구는 메타분석(Meta-Analysis) 기법을 적용하여 ESC(Electronic Stability Control) 시스템의 교통안전 측면의 효과를 평가하였다. 교통안전성의 평가지표로 사고율, 사망사고율, 통제상실 사고율을 설정하였으며 ESC를 주요 키워드로 선정하여 기존 문헌을 수집하였다. 수집된 연구결과를 승산비의 효과크기(Effect-size)로 정리하였고, 개별 연구들 간의 이질성을 고려하여 랜덤효과모형을 적용해 통합 승산비 효과크기를 도출하였다. 분석결과, 사고율의 승산비 효과크기는 0.90으로 차량에 ESC 적용 시 사고율이 10% 감소하는 것으로 나타났다. 또한 사망사고율의 승산비 효과크기는 0.64로 차량에 ESC 시스템 적용 시 사망사고율이 36% 감소하는 것으로 분석되었다. 통제상실 사고율의 승산비 효과크기는 0.73으로 도출되어 ESC 시스템 적용 시통제상실 사고율이 27% 감소하는 것으로 분석되었다. 본 연구의 결과는 상용차 ESC 장착 의무화를 위한 제도 정비 및 관련 기술 개발 전략 수립 시 유용하게 활용될 수 있을 것으로 판단된다.

제동 시스템을 위한 고주파수 ECU의 제어 특성 연구 (Study on the Characteristics of Control by High Frequency ECU for Braking System)

  • 연규봉;정정화
    • 한국산학기술학회논문지
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    • 제13권6호
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    • pp.2428-2434
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    • 2012
  • 본 논문은 제동 시스템에서 전자식 주행안정 제어장치(ESC)의 유압 모듈레이터의 솔레노이드 밸브 제어에 대한 것이다. ESC의 전자제어유니트(ECU)를 제어하기 위한 방법으로 고주파수 제어와 슬로프 제어를 적용하였으며, 서지 압력 및 전자파간섭(EMI) 저감 특성을 연구하였다. 고주파수에서의 전자파 방출을 줄이기 위하여 ECU 출력 단에 슬로프 제어 기능을 추가하였다. 측정결과 제동 시스템에서 고주파수 ECU의 솔레노이드 밸브제어 방법에 따라 서지 압력과 전자파 방출이 저감될 수 있음을 확인하였다. 결론적으로 고주파수 ECU 제어 연구 결과에 의해 제동 시스템 성능을 향상방안을 제시하고자 한다.

차량 내 네트워크 선정에 따른 ESC 성능 분석을 위한 ECU-In-the-Loop 시뮬레이션 (ECU-In-the-Loop Simulation for ESC Performance Analysis on the Selection of In-vehicle Networks)

  • 양승문;김성엽;기영훈;안현식
    • 한국자동차공학회논문집
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    • 제21권5호
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    • pp.87-96
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    • 2013
  • This paper shows how the performance of an ESC(Electronic Stability Control) system can be affected by the selection of in-vehicle network protocols such as CAN or FlexRay. The vehicle control performance under ESC operation is analyzed by EILS(ECU-In-the-Loop Simulation). The experimental set-up for the EILS of the ESC system consists of two 32-bit microcontroller boards communicated with CAN or FlexRay protocols. A 7-DOF vehicle model and an ESC algorithm with 2-DOF reference vehicle model are implemented on each microcontroller respectively. It is shown by experimental results that the ESC system using the FlexRay protocol can achieve better performance than that using the CAN protocol for a fast and accurate lane changing.

타이어 횡력 제한 조건 하에서 ESC와 AFS를 이용한 통합 섀시 제어 (Unified Chassis Control with ESC and AFS under Lateral Tire Force Constraint on AFS)

  • 임성진;남기홍;이호석
    • 제어로봇시스템학회논문지
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    • 제21권7호
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    • pp.595-601
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    • 2015
  • This paper presents an unified chassis control with electronic stability control (ESC) and active front steering (AFS) under lateral force constraint on AFS. When generating the control yaw moment, an optimization problem is formulated in order to determine the tire forces, generated by ESC and AFS. With Karush-Kuhn-Tucker optimality condition, the optimum tire forces can be algebraically calculated. On low friction road, the lateral force in front wheels is easily saturation. When saturated, AFS cannot generate the required control yaw moment. To cope with this problem, new constraint on the lateral tire force is added into the original optimization problem. To check the effectiveness of the propose method, simulation is performed on the vehicle simulation package, CarSim.

차량 횡방향 안정성 향상을 위한 통합섀시 제어 (Unified Chassis Control for Improvement of Vehicle Lateral Stability)

  • 조완기;이경수;윤장열
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회A
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    • pp.1126-1131
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    • 2007
  • This paper presents unified chassis control (UCC) to improve the vehicle lateral stability. The unified chassis control implies combined control of active front steering (AFS), electronic stability control (ESC) and continuous damping control (CDC). A direct yaw moment controller based on a 2-D bicycle model is designed by using sliding mode control law. A direct roll moment controller based on a 2-D roll model is designed. The computed direct yaw moment and the direct roll moment are generated by AFS, ESP and CDC control modules respectively. A control authority of the AFS and the ESC is determined by tire slip angle. Computer simulation is conducted to evaluate the proposed integrated chassis controller by using the Matlab, simulink and the validated vehicle simulator. From the simulation results, it is shown that the proposed unified chassis control can provide with improved performance over the modular chassis control.

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