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Design and Simulation of Electro-hydrostatic Actuator with a Built-in Power Regulator 被引量:16
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作者 Kang Rongjie Jiao Zongxia Wang Shaoping Chen Lisha 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2009年第6期700-706,共7页
The electro-hydrostatic actuator (EHA) is a kind of power-by-wire (PBW) actuator that converts the electrical power into localized hydraulic power for flight control. By removing the central hydraulic power supply... The electro-hydrostatic actuator (EHA) is a kind of power-by-wire (PBW) actuator that converts the electrical power into localized hydraulic power for flight control. By removing the central hydraulic power supply together with hydraulic pipes, an EHA's reliability and efficiency are greatly improved but its frequency width and stiffness decreased. To overcome the drawback, this article proposes a novel structure of EHA associated with a power regulator. Composed of a high-pressure accumulator and a proportional valve, it can store and harness the hydraulic power flexibly according to the changing control requirements. The concept of transferred volume is put forward to estimate the capability of the power regulator. The actuator output position can be kept fixed with a hydraulic lock. The compounded control is specially developed to ensure the actuator system to operate in a correct manner. The simulation results indicate that the new-brand actuator results in efficient expanding of the system frequency width with an optimal power supply. 展开更多
关键词 electro-hydrostatic actuator (EHA) power regulator transferred volume hydraulic lock frequency width STIFFNESS
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Modelling and simulation of flight control electromechanical actuators with special focus on model architecting, multidisciplinary effects and power flows 被引量:11
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作者 Fu Jian Jean-Charles Maré Fu Yongling 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2017年第1期47-65,共19页
In the aerospace field, electromechanical actuators are increasingly being implemented in place of conventional hydraulic actuators. For safety-critical embedded actuation applications like flight controls, the use of... In the aerospace field, electromechanical actuators are increasingly being implemented in place of conventional hydraulic actuators. For safety-critical embedded actuation applications like flight controls, the use of electromechanical actuators introduces specific issues related to thermal balance, reflected inertia, parasitic motion due to compliance and response to failure. Unfortunately, the physical effects governing the actuator behaviour are multidisciplinary, coupled and nonlinear. Although numerous multi-domain and system-level simulation packages are now available on the market, these effects are rarely addressed as a whole because of a lack of scientific approaches for model architecting, multi-purpose incremental modelling and judicious model implementation. In this publication, virtual prototyping of electromechanical actuators is addressed using the Bond-Graph formalism. New approaches are proposed to enable incremental modelling,thermal balance analysis, response to free-run or jamming faults, impact of compliance on parasitic motion, and influence of temperature. A special focus is placed on friction and compliance of the mechanical transmission with fault injection and temperature dependence. Aileron actuation is used to highlight the proposals for control design, energy consumption and thermal analysis, power network pollution analysis and fault response. 展开更多
关键词 Bond Graph electro-hydrostatic actuator electromechanical actuator More electric aircraft MODELLING Power-by-wire Power loss SIMULATION
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Variable load failure mechanism for high-speed load sensing electro-hydrostatic actuator pump of aircraft 被引量:10
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作者 Cun SHI Shaoping WANG +1 位作者 Xingjian WANG Yixin ZHANG 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2018年第5期949-964,共16页
This paper presents a novel transient lubrication model for the analysis of the variable load failure mechanism of high-speed pump used in Load Sensing Electro-Hydrostatic Actuator(LS-EHA). Focusing on the slipper/s... This paper presents a novel transient lubrication model for the analysis of the variable load failure mechanism of high-speed pump used in Load Sensing Electro-Hydrostatic Actuator(LS-EHA). Focusing on the slipper/swashplate pair partial abrasion, which is considered as the dominant failure mode in the high-speed condition, slipper dynamic models are established. A forth sliding motion of the slipper on the swashplate surface is presented under the fact that the slipper center of mass will rotate around the center of piston ball when the swashplate angle is dynamically adjusted. Besides, extra inertial tilting moments will be produced for the slipper based on the theorem on translation of force, which will increase rapidly when LS-EHA pump operates under highspeed condition. Then, a dynamic lubricating model coupling with fluid film thickness field, temperature field and pressure field is proposed. The deformation effects caused by thermal deflection and hydrostatic pressure are considered. A numerical simulation model is established to validate the effectiveness and accuracy of the proposed model. Finally, based on the load spectrum of aircraft flight profile, the variable load conditions and the oil film characteristics are analyzed, and series of variable load rules of oil film thickness with variable speed/variable pressure/variable displacement are concluded. 展开更多
关键词 Coupling lubrication model electro-hydrostatic Actuator (EHA) High-speed pump Partial abrasion Slipper pair Variable load
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Experimental study of an insert and its influence on churning losses in a high-speed electro-hydrostatic actuator pump of an aircraft 被引量:9
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作者 Junhui ZHANG Ying LI +2 位作者 Bing XU Min PAN Qun CHAO 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2019年第8期2028-2036,共9页
The speed of an Electro-Hydrostatic Actuator(EHA) pump can recently reach 20000 r/min, and its churning losses increase obviously with an increasing speed, which results in low efficiency and thus increasing heat in a... The speed of an Electro-Hydrostatic Actuator(EHA) pump can recently reach 20000 r/min, and its churning losses increase obviously with an increasing speed, which results in low efficiency and thus increasing heat in aircraft EHA systems. In order to reduce churning losses at high speeds, more attention should be given to the design of an insert. In this paper, the effect of an insert with different design parameters on churning losses is investigated through Computational Fluid Dynamics(CFD) simulation and experiments by calculating the difference between churning losses torques of the test pump with and without the insert based on a high-speed churning losses test rig.Analytical results show that the gap between the insert and the cylinder is critical for churning losses reduction. It is found that the churning losses of the test pump can be reduced with a decreasing gap between the cylinder block and the insert at high speeds. This is because the insert can decrease the turbulence occurrence at high speeds. The results can be used for flow field analysis and optimization of the high-speed EHA pump and provide a new method for improving efficiency of high-speed EHA pumps. 展开更多
关键词 CHURNING LOSSES Efficiency electro-hydrostatic actuator PUMP High speed INSERT
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Research on Dual-Variable Integrated Electro-Hydrostatic Actuator 被引量:8
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作者 高波 付永领 +1 位作者 裴忠才 马纪明 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2006年第1期77-82,共6页
The integrated electro-hydrostatic actuator (EHA) with variable displacement and variable rotation speed is researched. In the system, the output of the actuator is changed by controlling the rotationspeed of the br... The integrated electro-hydrostatic actuator (EHA) with variable displacement and variable rotation speed is researched. In the system, the output of the actuator is changed by controlling the rotationspeed of the brushless DC servomotor and the displacement of the servopump. The mathematical model described in state-space model is created. The system characteristics are studied based on the point of multiplicative dual-variable. And the basic method of control of the system is presented. 展开更多
关键词 electro-hydrostatic actuator (EHA) power-by-wire (PBW) INTEGRATED dual-variable control
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Modeling and control of a novel electro-hydrostatic actuator with adaptive pump displacement 被引量:9
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作者 Yan WANG Shengrong GUO Hongkang DONG 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2020年第1期365-371,共7页
The variable pump displacement and variable motor speed electro-hydrostatic actuator(EHA),one of the three types of EHAs,has advantages such as short response time,flexible speed regulation,and high efficiency.However... The variable pump displacement and variable motor speed electro-hydrostatic actuator(EHA),one of the three types of EHAs,has advantages such as short response time,flexible speed regulation,and high efficiency.However,the nonlinearity of its double-input single-output system poses a great challenge for system control.This study proposes a novel EHA with adaptive pump displacement and variable motor speed(EHA-APVM).A closed-loop position is realized using a servomotor.Moreover,the displacement varies with the system pressure;thus,the EHA-APVM is a single-input and single-output system.Firstly,the working principles of the EHA-APVM and the pump used in the system are introduced.Secondly,a nonlinear mathematical model of the proposed EHA-APVM control system is established,and a feedback back-stepping(FBBS)control algorithm is introduced to transform the complex nonlinear system into a linear system on the basis of the back-stepping control theory.Finally,simulation results prove that the EHA-APVM has a quick response and high robustness to variations of the load and the pump displacement.In this work,the size and weight of the motor are significantly reduced because the maximum power requirement is reduced,which is very beneficial for using the actuator in airborne equipment. 展开更多
关键词 Adaptive DISPLACEMENT PUMP Back-stepping control electro-hydrostatic actuator Feedback LINEARIZATION Robustness
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Active fault tolerant control for vertical tail damaged aircraft with dissimilar redundant actuation system 被引量:6
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作者 Wang Jun Wang Shaoping +2 位作者 Wang Xingjian Shi Cun Mileta M.Tomovic 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2016年第5期1313-1325,共13页
This paper proposes an active fault-tolerant control strategy for an aircraft with dissimilar redundant actuation system (DRAS) that has suffered from vertical tail damage. A damage degree coefficient based on the e... This paper proposes an active fault-tolerant control strategy for an aircraft with dissimilar redundant actuation system (DRAS) that has suffered from vertical tail damage. A damage degree coefficient based on the effective vertical tail area is introduced to parameterize the damaged flight dynamic model. The nonlinear relationship between the damage degree coefficient and the corresponding stability derivatives is considered. Furthermore, the performance degradation of new input channel with electro-hydrostatic actuator (EHA) is also taken into account in the damaged flight dynamic model. Based on the accurate damaged flight dynamic model, a composite method of linear quadratic regulator (LQR) integrating model reference adaptive control (MRAC) is proposed to reconfigure the fault-tolerant control law. The numerical simulation results validate the effectiveness of the proposed fault-tolerant control strategy with accurate flight dynamic model. The results also indicate that aircraft with DRAS has better fault-tolerant control ability than the traditional ones when the vertical tail suffers from serious damage. 展开更多
关键词 Dissimilar redundant actuation system electro-hydrostatic actuator Fault-tolerant control Linear quadratic regulator Model reference adaptivecontrol Nonlinear aircraft model Vertical tail loss
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Effects of splined shaft bending rigidity on cylinder tilt behaviour for high-speed electrohydrostatic actuator pumps 被引量:5
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作者 Junhui ZHANG Yuan CHEN +2 位作者 Bing XU Min PAN Qun CHAO 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2019年第2期499-512,共14页
High-speed axial piston pumps are hydraulic power supplies for electro-hydrostatic actuators(EHAs). The efficiency of a pump directly affects the operating performance of an EHA, and an understanding of the physical p... High-speed axial piston pumps are hydraulic power supplies for electro-hydrostatic actuators(EHAs). The efficiency of a pump directly affects the operating performance of an EHA, and an understanding of the physical phenomena occurring in the cylinder/valve plate interface is essential to investigate energy dissipation. The effects of the splined shaft bending rigidity on the cylinder tilt behaviour in an EHA pump need to be considered, because the deflection and radial expansion of a steel shaft rotating at a high speed cannot be ignored. This paper proposes a new mathematical model to predict the cylinder tilt behaviour by establishing a quantitative relationship between the splined shaft deflection, the cylinder tilt angle, and the tilt azimuth angle. The moments exerted by the splined shaft are included in the equilibrium equation of the cylinder. The effects of solid and hollow splined shafts equipped in an EHA pump prototype are compared at variable speeds of 5000–10,000 r/min. With a weight saving of 29.7%, the hollow shaft is experimentally found to have almost no influence on the volumetric efficiency, but to reduce the mechanical efficiency by 0.6–2.4%. The results agree with the trivial differences of the simulated central gap heights of the interface between the two shafts and the enlargement of the simulated tilt angles by the hollow shaft. The findings could guide designs of the cylinder/valve plate interface and the splined shaft to improve both the efficiency and power density of an EHA pump. 展开更多
关键词 electro-hydrostatic ACTUATOR pump Mathematical models RIGIDITY Splined SHAFT deflection TILT BEHAVIOUR prediction
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Modeling and analysis of oil frictional loss in wet-type permanent magnet synchronous motor for aerospace electro-hydrostatic actuator
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作者 Jinquan XU Wenbo JIN +3 位作者 Hong GUO Tian YU Wenhu FAN Zongxia JIAO 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2023年第11期328-341,共14页
To improve the power density and simplify the seal structure,the Wet-Type Permanent Magnet Synchronous Motor(WTPMSM)technique has been applied to aerospace Electro-Hydrostatic Actuators(EHA).In a WTPMSM,the stator and... To improve the power density and simplify the seal structure,the Wet-Type Permanent Magnet Synchronous Motor(WTPMSM)technique has been applied to aerospace Electro-Hydrostatic Actuators(EHA).In a WTPMSM,the stator and the rotor are both immersed in the aviation hydraulic oil.Although the heat dissipation performance of the WTPMSM can be enhanced,the aviation hydraulic oil will cost an extra oil frictional loss in the narrow airgap of the WTPMSM.This paper proposes an accurate oil frictional loss model for the WTPMSM,in which the wide speed range(0–20 kr/min)and the narrowness of the airgap(0.5–1.5 mm)are its features.Firstly,the mechanism of the oil frictional loss in the airgap of the WTPMSM is revealed.Then an accurate oil frictional loss model is proposed considering the nonlinear influence caused by the Taylor vortex.Furthermore,the influence of motor dimensions on oil frictional loss is analyzed.Finally,the proposed oil frictional loss model is verified by experiments,which provides a guideline for engineers to follow in the WTPMSM design. 展开更多
关键词 electro-hydrostatic actuator Motor dimensions Oil frictional loss Taylor vortex Wet-type permanent magnet synchronous motor
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Dynamic thermal coupling modeling and analysis of wet electro-hydrostatic actuator 被引量:3
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作者 Zongxia JIAO Yanpeng LI +3 位作者 Tian YU Chaofan JIANG Ligang HUANG Yaoxing SHANG 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2022年第6期298-311,共14页
The electro-hydrostatic actuator(EHA)used in more electric aircraft(MEA)has been extensively studied due to its advantages of high reliability and high integration.However,this high integration results in a small heat... The electro-hydrostatic actuator(EHA)used in more electric aircraft(MEA)has been extensively studied due to its advantages of high reliability and high integration.However,this high integration results in a small heat dissipation area,leading to high-temperature problems.Generally,to reduce the temperature,a wet cooling method of using the pump leakage oil to cool the motor is adopted,which can also increase the difficulty of accurately predicting the system temperature in the early design stage.To solve this problem,a dynamic coupling thermal model of a wet EHA is proposed in this paper.In particular,the leakage oil of the pump is used as a coupling item between the electrical system and the hydraulic system.Then,an improved T-equivalent block model is proposed to address the uneven distribution of axial oil temperature inside the motor,and the control node method is applied to hydraulic system thermal modeling.Meanwhile,a dynamic coupling thermal model is developed that enables a dynamic evaluation of the wet EHA temperature.Then,experimental prototypes of wet motor and wet EHA are developed,while the temperature response of the wet motor at different rotation speeds and different loads and the temperature response of the wet EHA at no-load condition were verified experimentally at room temperature,respectively.The maximum temperature difference between the experimental and theoretical results of the wet motor as well as the experimental and theoretical results of the wet EHA is less than 8℃.These test results indicate that the dynamic coupling thermal model is valid and demonstrate that the thermal coupling modeling method proposed in this paper can provide a basis for the detailed thermal design of EHA. 展开更多
关键词 electro-hydrostatic actuator HYDRAULIC More electric aircraft Thermal mode Wet motor
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Erosion degradation characteristics of a linear electro-hydrostatic actuator under a high-frequency turbulent flow field 被引量:2
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作者 Yuan LI Shaoping WANG +1 位作者 Mileta M.TOMOVIC Chao ZHANG 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2018年第5期914-926,共13页
The paper proposes a performance degradation analysis model based on dynamic erosion wear for a novel Linear Electro-Hydrostatic Actuator(LEHA). Rather than the traditional statistical methods based on degradation d... The paper proposes a performance degradation analysis model based on dynamic erosion wear for a novel Linear Electro-Hydrostatic Actuator(LEHA). Rather than the traditional statistical methods based on degradation data, the method proposed in this paper firstly analyzes the dominant progressive failure mode of the LEHA based on the working principle and working conditions of the LEHA. The Computational Fluid Dynamics(CFD) method, combining the turbulent theory and the micro erosion principle, is used to establish an erosion model of the rectification mechanism. The erosion rates for different port openings, under a time-varying flow field, are obtained. The piecewise linearization method is applied to update the concentration of contaminated particles within the LEHA, in order to gain insight into the erosion degradation process at various stages of degradation. The main contribution of the proposed model is the application of the dynamic concentration of contamination particles in erosion analysis of Electro-Hydraulic Servo Valves(EHSVs), throttle valves, spool valves, and needle valves. The effects of system parameters and working conditions on component wear are analyzed by simulations. The results of the proposed model match the expected degradation process. 展开更多
关键词 Computational fluid dynamics Degradation characteristics Dynamic contaminated particles concentration EROSION Linear electro-hydrostatic Actuator Performance degradation
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Multi-objective optimization of surface texture for the slipper/swash plate interface in EHA pumps 被引量:1
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作者 Junhui ZHANG Yining SHEN +4 位作者 Minyao GAN Qi SU Fei LYU Bing XU Yuan CHEN 《Frontiers of Mechanical Engineering》 SCIE CSCD 2022年第4期229-242,共14页
Well-designed surface textures can improve the tribological properties and the efficiency of the electro-hydrostatic actuator(EHA)pump under high-speed and high-pressure conditions.This study proposes a multi-objectiv... Well-designed surface textures can improve the tribological properties and the efficiency of the electro-hydrostatic actuator(EHA)pump under high-speed and high-pressure conditions.This study proposes a multi-objective optimization model to obtain the arbitrarily surface textures design of the slipper/swash plate interface for improving the mechanical and volumetric efficiency of the EHA pump.The model is composed of the lubrication film model,the component dynamic model considering the spinning motion,and the multi-objective optimization model.In this way,the arbitrary-shaped surface texture with the best comprehensive effect in the EHA pump is achieved and its positive effects in the EHA pump prototype are verified.Experimental results show a reduction in wear and an improvement in mechanical and volumetric efficiency by 1.4%and 0.8%,respectively,with the textured swash plate compared with the untextured one. 展开更多
关键词 electro-hydrostatic actuator axial piston pump slipper/swash plate interface multi-objective optimization surface texture
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An electro-hydrostatic actuator for hybrid active-passive vibration isolation 被引量:2
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作者 Jean-Paul Henderson Andrew Plummer Nigel Johnston 《International Journal of Hydromechatronics》 2018年第1期47-71,共25页
A novel electro-hydrostatic actuator (EHA) for active vibration isolation has been designed, modelled and tested. The EHA consists of a brushless DC motor running in oil and integrated with a bidirectional gear pu... A novel electro-hydrostatic actuator (EHA) for active vibration isolation has been designed, modelled and tested. The EHA consists of a brushless DC motor running in oil and integrated with a bidirectional gear pump, driving a hydraulic cylinder. The actuator is designed to be integrated into a flexible strut connecting a helicopter rotor hub and fuselage, to provide isolation at the dominant rotor vibration frequency of around 20 Hz. The resonant frequency of the EHA is tuned to provide some passive vibration isolation. Active control increases the isolation performance by compensating for damping losses, and provides isolation over a broader range of frequencies. Tests on a prototype demonstrated a four-fold reduction of the root-mean-square transmitted force and a near elimination at the fundamental frequency. The advantages of the resonant EHA are a wider range of operating frequencies than a purely passive system, and lower power consumption than a purely active system. 展开更多
关键词 electro-hydrostatic actuator EHA tuned mass damper ROTORCRAFT vibration isolation inerter hydromechatronics servohydraulics servopump vibration control.
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一种新型机载一体化电液作动器的设计与分析 被引量:28
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作者 李军 付永领 +1 位作者 王占林 高波 《北京航空航天大学学报》 EI CAS CSCD 北大核心 2003年第12期1101-1104,共4页
针对近年来飞机机载作动系统的发展 ,设计了一种用于功率电传的新型一体化电动静液压作动器 (EHA) ,分析其原理和特点 ,讨论各部件和系统的建模方法 ,采用Matlab Simulink对其进行仿真 ,结果表明所设计的EHA具有良好的动态性能和带负载... 针对近年来飞机机载作动系统的发展 ,设计了一种用于功率电传的新型一体化电动静液压作动器 (EHA) ,分析其原理和特点 ,讨论各部件和系统的建模方法 ,采用Matlab Simulink对其进行仿真 ,结果表明所设计的EHA具有良好的动态性能和带负载能力 ,达到了良好的性能指标 ,可作为未来飞机机载电作动系统的方案之一 ,对功率电传电液作动系统的研制具有实际指导意义 . 展开更多
关键词 非线性控制系统 建立模型 仿真 功率电传 飞机作动系统 动静液压作动器 性能分析
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机载电静液作动系统的发展现状与关键技术研究 被引量:24
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作者 李军 付永领 王占林 《航空制造技术》 2005年第11期73-77,共5页
总结了新型机载作动系统的发展背景与研究意义,介绍了用于功率电传的电静液作动器和机电作动器的发展现状,综述了机载电静液作动系统设计、开发和取得的技术成果,论述了机载电静液作动系统发展中有待于进一步研究的问题,提出了开展该项... 总结了新型机载作动系统的发展背景与研究意义,介绍了用于功率电传的电静液作动器和机电作动器的发展现状,综述了机载电静液作动系统设计、开发和取得的技术成果,论述了机载电静液作动系统发展中有待于进一步研究的问题,提出了开展该项研究的建议和措施。 展开更多
关键词 机载作动系统 功率电传 电静液作动器 机电作动器
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车辆电动静液压半主动悬架设计与馈能研究 被引量:25
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作者 寇发荣 《农业机械学报》 EI CAS CSCD 北大核心 2016年第5期352-359,共8页
为了实现车辆悬架的减振控制及振动能量回收,提出并设计了一种基于电动静液压作动器(EHA)的车辆半主动馈能悬架结构。建立了2自由度半主动悬架力学模型以及EHA作动器的数学模型;设计了EHA作动器,进行了电机特性试验和EHA作动器的馈能试... 为了实现车辆悬架的减振控制及振动能量回收,提出并设计了一种基于电动静液压作动器(EHA)的车辆半主动馈能悬架结构。建立了2自由度半主动悬架力学模型以及EHA作动器的数学模型;设计了EHA作动器,进行了电机特性试验和EHA作动器的馈能试验;设计了EHA半主动悬架最优控制和能量管理控制策略,利用AMESim与Matlab/Simulink软件对EHA半主动悬架动态性能和能量回馈进行了仿真;设计了EHA半主动悬架试验测试系统,开展了EHA半主动悬架控制台架试验。仿真与试验结果表明,提出的EHA作动器馈能效果较好,馈能效率平均为50%左右;与被动悬架相比,在正弦激励和随机路面谱输入下EHA半主动悬架的簧载质量加速度下降20%左右,减振效果明显。 展开更多
关键词 电动静液压作动器 半主动悬架 馈能 最优控制 能量管理 台架试验
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基于AMESim的电动静液作动器的仿真分析 被引量:17
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作者 齐海涛 付永领 《机床与液压》 北大核心 2007年第3期184-186,共3页
阐述了一种用于飞机主飞行控制的电动静液作动器(EHA)的系统组成和工作原理,并基于AMESim高级建模和仿真平台对其进行了建模和仿真分析。采用AMESim对机电液控混合系统进行仿真具有明显的优势,仿真结果表明,所设计的EHA动态性能良好,达... 阐述了一种用于飞机主飞行控制的电动静液作动器(EHA)的系统组成和工作原理,并基于AMESim高级建模和仿真平台对其进行了建模和仿真分析。采用AMESim对机电液控混合系统进行仿真具有明显的优势,仿真结果表明,所设计的EHA动态性能良好,达到了预定的性能指标,能够满足现代飞机对作动系统的要求,在飞控系统中具有很好的应用前景。 展开更多
关键词 功率电传(PBW) 电动静液作动器(EHA) 仿真 AMESIM
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集成电动静液作动系统理论与技术 被引量:20
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作者 付永领 邵云滨 +1 位作者 齐海涛 祁晓野 《液压与气动》 北大核心 2015年第5期1-9,共9页
飞机多电化时代已经到来,飞机发动机、发电机、配电系统、用电系统、环控系统、作动系统、起降转弯刹车系统以及其他机载系统都在发生着多电化的变化。该文从多电化趋势阐述集成电动静液作动器的国外研发现状,介绍了集成电动静液作动系... 飞机多电化时代已经到来,飞机发动机、发电机、配电系统、用电系统、环控系统、作动系统、起降转弯刹车系统以及其他机载系统都在发生着多电化的变化。该文从多电化趋势阐述集成电动静液作动器的国外研发现状,介绍了集成电动静液作动系统的组成原理、相关理论和关键技术。 展开更多
关键词 多电飞机 电动静液作动器(EHA) 集成作动 电液泵 检测作动集成技术
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超磁致伸缩电静液作动器磁场分析与优化 被引量:19
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作者 杨旭磊 朱玉川 +2 位作者 费尚书 纪良 郭亚子 《航空动力学报》 EI CAS CSCD 北大核心 2016年第9期2210-2217,共8页
提出一种超磁致伸缩电静液作动器(GMEHA)结构,采用永磁体与控制线圈组合提供驱动磁场.首先建立了该组合磁路数学模型,并给出了超磁致伸缩棒内磁感应强度计算解析式;其次,对以上结构进行了有限元分析(FEA),得出了磁路主要结构参数与磁场... 提出一种超磁致伸缩电静液作动器(GMEHA)结构,采用永磁体与控制线圈组合提供驱动磁场.首先建立了该组合磁路数学模型,并给出了超磁致伸缩棒内磁感应强度计算解析式;其次,对以上结构进行了有限元分析(FEA),得出了磁路主要结构参数与磁场分布均匀性之间映射规律;最后进行了作动器磁场试验研究并与有限元分析结果进行了对比,验证了理论与有限元模型的可预测性,给出了该电静液作动器结构设计方法.结果表明:该电静液作动器的最佳驱动频率为250Hz,最大无负载体积流量为0.85L/min,最大阻断力达到了120N. 展开更多
关键词 电静液作动器(EHA) 超磁致伸缩棒 磁场 有限元方法 均匀度
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泵阀协调控制电动静液作动器方案分析 被引量:15
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作者 齐海涛 付永领 王占林 《北京航空航天大学学报》 EI CAS CSCD 北大核心 2008年第2期131-134,共4页
针对典型的EHA(Electro-Hydrostatic Actuator)系统存在的频响较低的问题,为了兼顾作动系统的效率和频响,将控制阀引入了EHA系统,提出了3种泵阀协调控制的EHA方案,分别是:采用EHSV(Electro-Hydraulic Servo Valve)的EHA系统,采用DDV(Dir... 针对典型的EHA(Electro-Hydrostatic Actuator)系统存在的频响较低的问题,为了兼顾作动系统的效率和频响,将控制阀引入了EHA系统,提出了3种泵阀协调控制的EHA方案,分别是:采用EHSV(Electro-Hydraulic Servo Valve)的EHA系统,采用DDV(DirectDrive Valve)的EHA系统以及采用TPCV(Total Pressure Control Valve)的EHA系统.阐述了这3种方案的系统组成及工作原理,采用AMESim对这3种方案及典型的EHA进行了仿真对比分析.从仿真结果可以看出:泵阀协调控制的EHA系统可以大大提高系统的频响,同时还具有较高的效率.作为3种过渡方案,将对目前机载电动静液作动系统的研制具有实际指导意义. 展开更多
关键词 功率电传 电动静液作动器 泵阀协调控制 电液伺服阀 直接驱动阀 总压力控制阀
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