• 제목/요약/키워드: semi-active vibration suppression

검색결과 13건 처리시간 0.027초

PSOF 제어를 이용한 능동과 반능동 유연 구조물의 진동제어 (Vibration suppression of active and semi-active flexible structures using a pseudo-sensor-output-freeback control)

  • 오동영;김영식
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 1997년도 추계학술대회논문집; 한국과학기술회관; 6 Nov. 1997
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    • pp.432-437
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    • 1997
  • In this paper, a pseudo-sensor-output-feedback(PSOF) control approach is applied to the active and semi-active systems for the vibration suppression of the flexible structures. This approach reduces the modeling error encounted in the output equation formulation and is easy to be implemented in practice. Experimental works are performed for the validation of theoretical predictions with a piezoelectric sensor and actuator bonded on the cantilever beam. The objective of this study is also to compare and analyze between active and semi-active systems. An algorithm based on the sliding mode control theory is developed and analyzed for the robustness to the modeling errors and parameter uncertainties.

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철도차량 승차감 향상을 위한 반능동/능동 진동제어 (Semi-active and Active Vibration Control to Improve Ride Comfort in Railway Vehicle)

  • 유원희;신유정;허현무;박준혁
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2013년도 춘계학술대회 논문집
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    • pp.248-253
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    • 2013
  • The maximum speed is one of the most important performance in high speed railway vehicle. The higher the train speed is, the worse the ride comfort is, In order to solve this problem, a semi-active or active suspension can be applied to high speed railway vehicle. The variable damper with hydraulic solenoid valve is used in the semi-active suspension. But the variable damper with hydraulic solenoid valve requires tank for supplying fluid. The MR(Magneto Rheological) damper can be considered instead of hydraulic variable damper which needs additional device, i.e. reserver tank for fluid. In the case of active suspension, hydraulic actuator or electro-mechanical one is used to suppress the carbody vibration in railway vehicle. In this study the MR damper and electro-mechanical actuator was considered in secondary suspension system of high speed railway vehicle. The dynamic analysis was performed by using 10-DOF dynamic equations of railway vehicle. The performance of the semi-active suspension and active suspension system were reviewed by using MATLAB/Simulink S/W. The vibration suppression effect of semi-active and active suspension system were investigated experimentally by using 1/5-scaled railway vehicle model.

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Self-powered hybrid electromagnetic damper for cable vibration mitigation

  • Jamshidi, Maziar;Chang, C.C.;Bakhshi, Ali
    • Smart Structures and Systems
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    • 제20권3호
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    • pp.285-301
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    • 2017
  • This paper presents the design and the application of a new self-powered hybrid electromagnetic damper that can harvest energy while mitigating the vibration of a structure. The damper is able to switch between an energy harvesting passive mode and a semi-active mode depending on the amount of energy harvested and stored in the battery. The energy harvested in the passive mode resulting from the suppression of vibration is employed to power up the monitoring and electronic components necessary for the semi-active control. This provides a hybrid control capability that is autonomous in terms of its power requirement. The proposed hybrid circuit design provides two possible options for the semi-active control: without energy harvesting and with energy harvesting. The device mechanism and the circuitry that can drive this self-powered electromagnetic damper are described in this paper. The parameters that determine the device feasible force-velocity region are identified and discussed. The effectiveness of this hybrid damper is evaluated through a numerical simulation study on vibration mitigation of a bridge stay cable under wind excitation. It is demonstrated that the proposed hybrid design outperforms the passive case without external power supply. It is also shown that a broader force range, facilitated by decoupled passive and semi-active modes, can improve the vibration performance of the cable.

PSOF 방법을 이용한 압전 지능 구조물의 능동 및 반능동 진동제어 (Active and Semi-Active Vibration Control of Piezoelectric Smart Structures Using a Pseudo-Sensor-Output-Feedback Method)

  • 김영식;김영태;오동영
    • 소음진동
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    • 제9권1호
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    • pp.70-76
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    • 1999
  • This paper presents a pseudo-sensor-output-feedback(PSOF) method for the vibration suppression of the flexible piezoelectric smart structures. This method reduces the modeling errors using pseudo sensors in the output equation formulation. It also reduces computation time in practice. since the output equation does not need the state observer required in the state space equation. Experimental works are performed for the validation of theoretical predictions with the piezoelectric sensor and actuator bonded on the cantilever beam. An algorithm based on the sliding mode control theory is developed and analyzed for the robustness to the modeling errors and parameter uncertainties. This study also discusses the characteristics of the active and semi-active systems.

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작동유체 질량을 고려한 유연우주트러스구조물 제진용 반능동 댐퍼의 성능분석 (Performance Investigation of Semi-Active Damper Considering Mass Modeling of Functional Fluid)

  • 오현웅;최영준;이경민
    • 한국항공우주학회지
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    • 제37권5호
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    • pp.450-456
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    • 2009
  • 수동형 진동제어 방식과 같이 시스템이 안정되며, 수동형에 비해 높은 제진 효과가 기대되는 반능동 진동제어 방식은 시스템의 안정화가 요구되는 우주구조물의 제진방법에 유효한 진동제어 방식중 하나이다. 본 논문에서는 유연우주트러스구조물의 진동제어를 위해 고안된 반능동 댐퍼내 작동유체의 질량을 모델링에 고려했을 경우의 제진특성을 분석하였고 댐퍼내 작동유체의 점성이 부족감쇠를 유지 할 경우, 작동유체 질량 적용에 따른 반능동 댐퍼의 제진효과를 확인하였으며 이를 토대로 반능동 댐퍼의 성능향상을 위한 설계방법을 제시하였다.

Energy-efficiency enhancement and displacement-offset elimination for hybrid vibration control

  • Makihara, Kanjuro
    • Smart Structures and Systems
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    • 제10권3호
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    • pp.193-207
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    • 2012
  • New insights into our previously proposed hybrid-type method for vibration control are highlighted in terms of energy analysis, such as the assessment of energy efficiency and system stability. The hybrid method improves the bang-bang active method by combining it with an energy-recycling approach. Its simple configuration and low energy-consumption property are quite suitable especially for isolated structures whose energy sources are strictly limited. The harmful influence of the external voltage is assessed, as well as its beneficial performance. We show a new chattering prevention approach that both harvests electrical energy from piezoelectric actuators and eliminates the displacement-offset of the equilibrium point of structures. The amount of energy consumption of the hybrid system is assessed qualitatively and is compared with other control systems. Experiments and numerical simulations conducted on a 10-bay truss can provide a thorough energy-efficiency evaluation of the hybrid suppression system having our energy-harvesting system.

Vibration suppression in high-speed trains with negative stiffness dampers

  • Shi, Xiang;Zhu, Songye;Ni, Yi-qing;Li, Jianchun
    • Smart Structures and Systems
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    • 제21권5호
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    • pp.653-668
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    • 2018
  • This work proposes and investigates re-centering negative stiffness dampers (NSDs) for vibration suppression in high-speed trains. The merit of the negative stiffness feature is demonstrated by active controllers on a high-speed train. This merit inspires the replacement of active controllers with re-centering NSDs, which are more reliable and robust than active controllers. The proposed damper design consists of a passive magnetic negative stiffness spring and a semi-active positioning shaft for re-centering function. The former produces negative stiffness control forces, and the latter prevents the amplification of quasi-static spring deflection. Numerical investigations verify that the proposed re-centering NSD can improve ride comfort significantly without amplifying spring deflection.

Semi-active structural fuzzy control with MR dampers subjected to near-fault ground motions having forward directivity and fling step

  • Ghaffarzadeh, Hosein
    • Smart Structures and Systems
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    • 제12권6호
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    • pp.595-617
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    • 2013
  • Semi-active control equipments are used to effectually enhance the seismic behavior of structures. Magneto-rheological (MR) dampers are semi-active devices that can be utilized to control the response of structures during seismic loads and have received voracious attention for response suppression. They supply the adaptability of active devices and stability and reliability of passive devices. This paper presents an optimal fuzzy logic control scheme for vibration mitigation of buildings using magneto-rheological dampers subjected to near-fault ground motions. Near-fault features including a directivity pulse in the fault-normal direction and a fling step in the fault-parallel direction are considered in the requisite ground motion records. The membership functions and fuzzy rules of fuzzy controller were optimized by genetic algorithm (GA). Numerical study is performed to analyze the influences of near-fault ground motions on a building that is equipped with MR dampers. Considering the uncontrolled system response as the base line, the proposed method is scrutinized by analogy with that of a conventional maximum dissipation energy (MED) controller to accentuate the effectiveness of the fuzzy logic algorithm. Results reveal that the fuzzy logic controllers can efficiently improve the structural responses and MR dampers are quite promising for reducing seismic responses during near-fault earthquakes.

The future role of smart structure systems in modern aircraft

  • Becker, J.;Luber, W.;Simpson, J.;Dittrich, K.
    • Smart Structures and Systems
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    • 제1권2호
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    • pp.159-184
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    • 2005
  • The paper intends to summarize some guidelines for future smart structure system application in military aircraft. This preview of system integration is based upon a review on approximately one and a half decades of application oriented aerospace related smart structures research. Achievements in the area of structural health monitoring, adaptive shape, adaptive load bearing devices and active vibration control have been reached, potentials have been identified, several feasibility studies have been performed and some smart technologies have been already implemented. However the realization of anticipated visions and previously initial timescales announced have been rather too optimistic. The current development shall be based on a more realistic basis including more emphasis on fundamental aircraft strength, stiffness, static and dynamic load and stability requirements of aircraft and interdisciplinary integration requirements and improvements of integrated actors, actuator systems and control systems including micro controllers.

자기유변유체를 이용한 반능동형 현가장치의 Frequency shaped 최적 제어 (Frequency Shaped Optimal Control of Semi-active Suspension System Using an MR Damper)

  • 김기덕;이재형;전도영
    • 유변학
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    • 제11권2호
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    • pp.112-121
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    • 1999
  • 현가장치의 기능은 노면으로부터의 진동이나 충격을 차체와 격리시키며 주행시 차량의 안전성을 확보하는데 있다. 고정된 스프링과 댐퍼의 특성으로는 두 가지 차량 주행특성을 나타내는 차체 가속도와 타이어 동적력을 최소화할 수 없으므로 가변형 댐퍼를 이용한 반능동식 현가장치로서 승차감과 주행 안정성을 동시에 고려하여 성능 지수를 설계하는 LQ(Linear Quadratic)제어 이론을 적용하는 연구가 진행되고 있다. LQ 제어 성능지수의 가중함수는 주파수와 시간에 관계없이 상수로 고정되기 때문에 각 요소에 대한 비중이 모든 상황에서 동일하나 승차감이나 주행 안정성의 평가기준이 모든 주파수에서 동일하지 않으므로 본 연구에서는 자기유변댐퍼를 장착한 1/4차의 반능동형 현가장치를 구성하고 LQ 제어의 문제점을 해결하는 Frequency shaped 최적 제어를 이용하여 특정 주파수 범위에서 차량의 승차감과 주행 안정성을 향상시킨다. Frequency shaped 최적 제어는 가중치가 주파수의 함수인 성능 지수를 통해 제어 규칙을 구하는데, 가중함수의 설계기준을 인간이 가장 민감하게 느끼는 4~8Hz의 주파수에서는 승차감에 두고 차축 고유 진동수 부근에는 주행안전성에 둔다. 모사실험과 실험 결과로부터 Frequency shaped 최적 제어기를 장착한 반능동형 현가장치가 승차감과 주행 안정성을 향상시킬 수 있음을 알 수 있다.

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