• 제목/요약/키워드: 엔진 능동 마운트

검색결과 26건 처리시간 0.026초

엔진마운트 능동제어용 시스템인식기술 (System Identification with Completely Unknown Periodic Disturbances in Active Engine Mount Control Application)

  • 이수철
    • 한국산업정보학회논문지
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    • 제4권1호
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    • pp.58-62
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    • 1999
  • 본 논문은 엔진마운트에서 주기적인 미지의 외란에서 나타나는 시스템의 입출력으로부터의 시스템 동특성을 인식할 수 있는 응용가능성을 보여 주고자 한다. 일반적으로 외란 진동과 파장형태는 확실히 알려져 있지 않고 임의적으로 발생되고 있다. 단지 제어량인 입력과 외란이 섞여 있는 출력측정량만이 시스템인식을 위하여 사용될 뿐이다. 보다 일반화되어 개발된 시스템인식기술 알고리즘은 승용차 능동엔진마운트의 진동제어를 위하여 능동제어에 앞선 미지의 주기적외란을 포함한 동특성시스템에서의 수학적 모의시험을 통하여 시스템인식기술의 완벽성을 나타내고 있다.

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전자식 능동 엔진 마운트 성능 최적화 (Performance Optimization of Electromagnetic Active Engine Mount)

  • 김원규;김연수;이완철;홍성우;김귀한
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2011년도 춘계학술대회 논문집
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    • pp.514-519
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    • 2011
  • Recently, the interest in technologies for a highly efficient powertrain, i.e. a variable displacement engine or a light weight car body, to improve the fuel efficiency of automobile saving the environment has been increased. However this trend deteriorates NVH performance of a vehicle and the use of a conventional engine mounting system becomes unsatisfactory. In order to solve this dilemma, an active engine mounting system that could isolate or cancel out vibrations occurred at the powertrain was suggested. In this paper, In order to optimize the electromagnetic active engine mount performance, the actuator of the engine mount through FEM analysis and optimal design, noise and elastomer testing of the prototype through the optimal design of actuators for the electromagnetic active engine mount on the impact of the performance improvement is verified.

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엔진마운트의 전달경로해석을 통한 실내소음저감 시뮬레이션 (Simulation on the Reduction of Interior Noise using the Transfer Path Analysis of the Active Engine Mount)

  • 이충휘;김영호;최현준;원종식
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2008년도 춘계학술대회논문집
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    • pp.166-170
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    • 2008
  • In this study, it proved that transfer path analysis is a proper technique to estimate the interior noise from comparing measured interior noise in case of 3 point supported engine mount system. And the simulation of the vibration isolation for active engine mount using FXLMS algorithm is performed. Also, it verified that reduction of estimated interior noise from transfer path analysis and simulation of the vibration isolation.

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압전 하이브리드 마운트의 진동제어 성능에 대한 실험적 고찰 (Experimental Investigation on Vibration Control Performances of the Piezoelectric Hybrid Mount)

  • 한영민
    • 한국융합학회논문지
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    • 제11권11호
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    • pp.203-209
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    • 2020
  • 본 연구에서는 자동차 엔진에 적용되는 고무마운트의 성능을 극대화하여 시동초기 진동특성를 개선하기 위해 능동형 하이브리드 마운트를 제안하고 진동절연 성능을 실험적으로 고찰하고자 한다. 제안된 하이브리드 마운트는 수동형 고무요소와 능동형 압전작동기로 구성되었으며, 동적 특성과 제어력의 실험적 고찰을 통해 하이브리드 마운트가 제작되었다. 수직방향의 진동을 고려하여 관성질량을 갖는 압전-고무 하이브리드 마운트의 동적 지배방정식을 수학적으로 모델링하였으며 상태 공간 방정식으로 표현하였다. 본 연구에서는 진동을 절연하기 위해 강건한 슬라이딩 모드 제어기가 구성되어 진동제어 실험에 적용되었다. 마지막으로 넓은 주파수 영역에서 진동제어 성능을 실험적으로 고찰하였으며 주파수 영역에서의 전달율과 시간영역에서 진동절연 성능을 평가하였다.

공압식 능동 엔진 마운트 개발 (Development of Pneumatic Active Engine Mount)

  • 최재용;이우현;김정훈;이동욱
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2008년도 추계학술대회논문집
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    • pp.282-283
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    • 2008
  • According to the development of vehicle technique, the improved NVH performance is required in the vehicle which have the high effectiveness and the high output of the powertrain. This vehicle has to be adapted to active engine mounting system to reduce the vibration in accordance with various vehicle information. The pneumatic active engine mounting system is consist with engine mount, solenoid valve, air tank and control unit totally. The important technique of this system is to reduce the vibration by the air pressure. This paper contains the development process of the pneumatic active engine mounting system and confirm the performance of this system test and vehicle test.

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능동 엔진 마운트 제어용 Active Linear Actuator를 이용한 외팔보 능동진동제어 실험 (Active Vibration Control Experiment of Cantilever Using Active Linear Actuator for Active Engine Mount)

  • 양동호;곽문규;김정훈;박운환;심호석
    • 한국소음진동공학회논문집
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    • 제20권12호
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    • pp.1176-1182
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    • 2010
  • Vibrations caused by automobile engine are absorbed mostly by a passive-type engine mount. However, user specifications for automobile vibrations require more stringent conditions and higher standard. Hence, active-type engine mount have been developed to cope with such specifications. The active-type engine mount consists of sensor, actuator and controller where a control algorithm is implemented. The performance of the active engine mount depends on the control algorithm if the sensor and actuator satisfies the specification. The control algorithm should be able to suppress persistent vibrations caused by the engine which are related to engine revolution. In this study, three control algorithms are considered for suppressing persistent vibrations, which are the positive position feedback control algorithm, the strain-rate feedback control algorithm, and the modified higher harmonic control algorithm. Experimental results show that all the control algorithms considered in this study are effective in suppressing resonant vibrations but the modified higher harmonic controller is the most effective controller for non-resonant vibrations.

MR 유체와 압전스택을 이용한 능동 엔진마운트 시스템의 HILS 제어 (Control of Active Engine Mount System Featuring MR Fluid and Piezostack via HILS)

  • 이동영;최승복
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2009년도 추계학술대회 논문집
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    • pp.351-356
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    • 2009
  • This paper presents vibration control performance of active engine mount system installed with the magneto-rheological (MR) mount and the piezostack mount. The performance is evaluated via hardware-in-the-loop-simulation(HILS) method. As a first step, six degrees-of freedom dynamic model of an in-line four-cylinder engine which has three points mounting system is derived by considering the dynamic behaviors of MR mount and piezostack mount. As a second step, sliding mode controller(SMC) is synthesized to actively control the imposed vibration In order to demonstrate the effectiveness of the proposed active engine mount, vibration control performances are evaluated under various engine operating speeds (wide frequency range) using HILS method and presented in time and frequency domain.

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MR 유체와 압전스택을 이용한 능동 엔진마운트 시스템의 HILS 제어 (Control of Active Engine Mount System Featuring MR Fluid and Piezostack via HILS)

  • 이동영;최승복
    • 한국소음진동공학회논문집
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    • 제20권2호
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    • pp.122-128
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    • 2010
  • This paper presents vibration control performance of active engine mount system installed with the magneto-rheological(MR) mount and the piezostack mount. The performance is evaluated via hardware-in-the-loop-simulation(HILS) method. As a first step, six degrees-of freedom dynamic model of an in-line four-cylinder engine which has three point mounting system is derived by considering the dynamic behaviors of MR mount and piezostack mount. As a second step, sliding mode controller(SMC) is synthesized to actively control the imposed vibration. In order to demonstrate the effectiveness of the proposed active engine mount, vibration control performances are evaluated under various engine operating speeds(wide frequency range) using HILS method and presented in time and frequency domain.

전자식 능동형 마운트 실차 성능평가 (Vehicle Test of Electromagnetic type Active Engine Mount)

  • 김정훈;이동욱;홍성우;배철용;홍승모
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2009년도 추계학술대회 논문집
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    • pp.486-487
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    • 2009
  • Recently active engine mounting system is developed for improvement of vehicle NVH Problem which is caused by development of high efficient powertrain and lightweight vehicle body. The aims in the development of active engine mounting system is performance confirmation of vehicle to apply active engine mount. In this paper, NVH test was done on test vehicle including active engine mount. And performance of active engine mount is evaluated by controlling active engine mount.

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전자식 능동 엔진 마운트 개발 (Development of Electromagnetic Active Engine Mount)

  • 홍성우;이호철;최상민;김정훈;이동욱
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2008년도 추계학술대회논문집
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    • pp.280-281
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    • 2008
  • In pursuit of decreasing noise and vibration, the electromagnetic active control mount(ACM) is developed which is corresponding with the tendency of greater fuel efficiency, higher engine power and lower lightweight vehicle. In process of developing the ACM, making patent searches and benchmarking are performed first, and then robust mount design which is reflected on the users' demand through Design For Six Sigma(DFSS) is carried out. The manufactured prototype of ACM is tested in various environmental conditions for the purpose of ensuring the performance quantitatively.

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