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Advancing Hierarchical Equations of Motion for Efficient Evaluation of Coherent Two-dimensional Spectroscopy 被引量:2
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作者 许健 徐瑞雪 +2 位作者 Darius Abramavicius 张厚道 严以京 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2011年第5期497-506,I0003,共11页
To advance hierarchical equations of motion as a standard theory for quantum dissipative dynamics, we put forward a mixed Heisenberg-SchrSdinger scheme with block-matrix implementation on efficient evaluation of nonli... To advance hierarchical equations of motion as a standard theory for quantum dissipative dynamics, we put forward a mixed Heisenberg-SchrSdinger scheme with block-matrix implementation on efficient evaluation of nonlinear optical response function. The new approach is also integrated with optimized hierarchical theory and numerical filtering algorithm. Different configurations of coherent two-dimensional spectroscopy of model excitonic dimer systems are investigated, with focusing on the effects of intermolecular transfer coupling and bi-exciton interaction. 展开更多
关键词 Hierarchical equations of motion two-dimensional spectroscopy Mixed Heisenberg-Schrodinger scheme
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Performance of a hybrid system with a semi-submersible wind platform and annular wave-energy converters
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作者 Binzhen ZHOU Yu WANG +3 位作者 Zhi ZHENG Peng JIN Lei WANG Yujia WEI 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 2025年第6期525-539,共15页
Installing annular wave-energy converters(WECs)on the columns of floating wind platforms in the form of a coaxial-cylinder provides a convenient means of integration.Extant coaxial-cylinder-type wind-wave hybrid syste... Installing annular wave-energy converters(WECs)on the columns of floating wind platforms in the form of a coaxial-cylinder provides a convenient means of integration.Extant coaxial-cylinder-type wind-wave hybrid systems are mostly based on single-column platforms such as spars(single coaxial-cylinder hybrid system'hereafter).Systems based on multiple-column platforms such as semi-submersible platforms('multiple coaxial-cylinder hybrid systems'hereafter)are rarely seen or studied,despite their superiority in wave-power absorption due to the use of multiple WECs as well as in dynamic stability.This paper proposes a novel WindFloat-annular-WEC hybrid system,based on our study investigating its dynamic and power features,and optimizing the geometry and power take-off of the WECs.Our results show that the dynamic and power features of a multiple coaxial-cylinder hybrid system are different from those of a single coaxial-cylinder hybrid system,so the same optimization parameters cannot be directly applied.Flatter annular WECs absorb slightly more power in a wider wave-period range,but their geometry is confined by limitations in installation and structural strength.The overall effect of an oblique incident wave is greater intensity in the motions of the hybrid system in yaw and the direction perpendicular to propagation,although the difference is small and maybe negligible. 展开更多
关键词 Semi-submersible wind platform Wave energy Annular wave-energy converter(WEC) Power performance motion
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Adaptive Sliding Control of Six-DOF Flight Simulator Motion Platform 被引量:22
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作者 吴东苏 顾宏斌 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2007年第5期425-433,共9页
There is proposed an adaptive sliding controller in task space on the base of the linear Newton-Euler dynamic equation of motion platform in a six-DOF flight simulator. The uncertain parameters are divided into two gr... There is proposed an adaptive sliding controller in task space on the base of the linear Newton-Euler dynamic equation of motion platform in a six-DOF flight simulator. The uncertain parameters are divided into two groups: the constant and the time-varying. The controller identifies constant uncertain parameters using nonlinear adaptive controller associated with elimination of the influences of time-varying uncertain parameters and compensation of the external disturbance using sliding control. The results of numerical simulation attest to the capability of this control scheme not only to, with deadly accuracy, identify parameters of motion platform such as load, inertia moments and mass center, but also effectively improve the robustness of the system. 展开更多
关键词 motion platform nonlinear adaptive control sliding control flight simulator Stewart platform
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Effects of Second-Order Sum-and Difference-Frequency Wave Forces on the Motion Response of a Tension-Leg Platform Considering the Set-down Motion 被引量:3
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作者 WANG Bin TANG Yougang CAI Runbo 《Journal of Ocean University of China》 SCIE CAS CSCD 2018年第2期311-319,共9页
This paper presents a study on the motion response of a tension-leg platform(TLP) under first-and second-order wave forces, including the mean-drift force, difference and sum-frequency forces. The second-order wave fo... This paper presents a study on the motion response of a tension-leg platform(TLP) under first-and second-order wave forces, including the mean-drift force, difference and sum-frequency forces. The second-order wave force is calculated using the full-field quadratic transfer function(QTF). The coupled effect of the horizontal motions, such as surge, sway and yaw motions, and the set-down motion are taken into consideration by the nonlinear restoring matrix. The time-domain analysis with 50-yr random sea state is performed. A comparison of the results of different case studies is made to assess the influence of second-order wave force on the motions of the platform. The analysis shows that the second-order wave force has a major impact on motions of the TLP. The second-order difference-frequency wave force has an obvious influence on the low-frequency motions of surge and sway, and also will induce a large set-down motion which is an important part of heave motion. Besides, the second-order sum-frequency force will induce a set of high-frequency motions of roll and pitch. However, little influence of second-order wave force is found on the yaw motion. 展开更多
关键词 tension-leg platform random WAVE SECOND-ORDER WAVE force quadratic transfer function sum-frequency differencefrequency set-down motion
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Modelling of the Vortex-Induced Motion of A Single-Column Platform with Non-Linear Mooring Stiffness Using the Coupled Wake Oscillators 被引量:2
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作者 HU Xiao-feng ZHANG Xin-shu +1 位作者 YOU Yun-xiang DUAN Jin-long 《China Ocean Engineering》 SCIE EI CSCD 2019年第4期459-467,共9页
A phenomenological model for predicting the vortex-induced motion (VIM) of a single-column platform with non- linear stiffness has been proposed. The VIM model is based on the couple of the Duffing-van der Pol oscilla... A phenomenological model for predicting the vortex-induced motion (VIM) of a single-column platform with non- linear stiffness has been proposed. The VIM model is based on the couple of the Duffing-van der Pol oscillators and the motion equations with non-linear terms. The model with liner stiffness is presented for comparison and their results are compared with the experiments in order to calibrate the model. The computed results show that the predicted VIM amplitudes and periods of oscillation are in qualitative agreements with the experimental data. Compared with the results with linear stiffness, it is found that the application of non-linear stiffness causes the significant reductions in the in-line and transverse motion amplitudes. Under the non-linear stiffness constraint, the lock-in behavior is still identified at 8<Ur<15, and the trajectories of the VIM on the xy plane with eight-figure patterns are maintained. The results with different non-linear geometrically parameters show that both in-line and transverse non-linear characteristics can significantly affect the predict in-line and transverse motion amplitudes. Furthermore, the computed results for different aspect ratios indicate that the in-line and transverse motion amplitudes increase with the growth of aspect ratio, and the range of lock-in region is enlarged for the large aspect ratio. 展开更多
关键词 vortex-induced motion single-column platform WAKE oscillators NON-LINEAR stiffness
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Research trends in methods for controlling macro-micro motion platforms 被引量:5
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作者 Lufan Zhang Pengqi Zhang +1 位作者 Boshi Jiang Heng Yan 《Nanotechnology and Precision Engineering》 EI CAS CSCD 2023年第3期64-78,共15页
With ongoing economic,scientific,and technological developments,the electronic devices used in daily lives are developing toward precision and miniaturization,and so the demand for high-precision manufacturing machine... With ongoing economic,scientific,and technological developments,the electronic devices used in daily lives are developing toward precision and miniaturization,and so the demand for high-precision manufacturing machinery is expanding.The most important piece of equipment in modern high-precision manufacturing is the macro-micro motion platform(M3P),which offers high speed,precision,and efficiency and has macro-micro motion coupling characteristics due to its mechanical design and composition of its driving components.Therefore,the design of the control system is crucial for the overall precision of the platform;conventional proportional–integral–derivative control cannot meet the system requirements,and so M3Ps are the subject of a growing range of modern control strategies.This paper begins by describing the development history of M3Ps,followed by their platform structure and motion control system components,and then in-depth assessments of the macro,micro,and macro-micro control systems.In addition to examining the advantages and disadvantages of current macro-micro motion control,recent technological breakthroughs are noted.Finally,based on existing problems,future directions for M3P control systems are given,and the present conclusions offer guidelines for future work on M3Ps. 展开更多
关键词 Macro-micro motion platform Precision positioning Control method Piezoelectric driver Voice coil motor
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The Nonlinear Bifurcation and Chaos of Coupled Heave and Pitch Motions of a Truss Spar Platform 被引量:3
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作者 HUANG Lei LIU Liqin +1 位作者 LIU Chunyuan TANG Yougang 《Journal of Ocean University of China》 SCIE CAS 2015年第5期795-802,共8页
This paper presents the results from a numerical study on the nonlinear dynamic behaviors including bifurcation and chaos of a truss spar platform. In view of the mutual influences between the heave and the pitch mode... This paper presents the results from a numerical study on the nonlinear dynamic behaviors including bifurcation and chaos of a truss spar platform. In view of the mutual influences between the heave and the pitch modes, the coupled heave and pitch motion equations of the spar platform hull were established in the regular waves. In order to analyze the nonlinear motions of the platform, three-dimensional maximum Lyapunov exponent graphs and the bifurcation graphs were constructed, the Poincare maps and the power spectrums of the platform response were calculated. It was found that the platform motions are sensitive to wave fre- quency. With changing wave frequency, the platform undergoes complicated nonlinear motions, including 1/2 sub-harmonic motion, quasi-periodic motion and chaotic motion. When the wave frequency approaches the natural frequency of the heave mode of the platform, the platform moves with quasi-periodic motion and chaotic motional temately. For a certain range of wave frequencies, the platform moves with totally chaotic motion. The range of wave frequencies which leads to chaotic motion of the platform increases with increasing wave height. The three-dimensional maximum Lyapunov exponent graphs and the bifurcation graphs reveal the nonlinear motions of the spar platform under different wave conditions. 展开更多
关键词 truss spar platform coupled heave and pitch quasi-periodic motion chaotic motion 1/2 sub-harmonic motion maximum Lyapunov exponent bifurcation graph
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Platform motion minimization using model predictive control of a floating offshore wind turbine 被引量:3
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作者 Kamran Ali Shah Ye Li +2 位作者 Ryozo Nagamune Yarong Zhou Waheed Ur Rehman 《Theoretical & Applied Mechanics Letters》 CSCD 2021年第5期291-295,共5页
Wind turbines are installed offshore with the assistance of a floating platform to help meet the world’s increasing energy needs.However,the incident wind and extra incident wave disturbances have an impact on the pe... Wind turbines are installed offshore with the assistance of a floating platform to help meet the world’s increasing energy needs.However,the incident wind and extra incident wave disturbances have an impact on the performance and operation of the floating offshore wind turbine(FOWT)in comparison to bottom-fixed wind turbines.In this paper,model predictive control(MPC)is utilized to overcome the limitation caused by platform motion.Due to the ease of control synthesis,the MPC is developed using a simplified model instead of high fidelity simulation model.The performance of the controller is verified in the presence of realistic wind and wave disturbances.The study demonstrates the effectiveness of MPC in reducing platform motions and rotor/generator speed regulation of FOWTs. 展开更多
关键词 Wind energy Floating offshore wind turbine platform motion Model predictive control
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Nonlinear Random Motion Analysis of A Tension Leg Platform Consider- ing the Set-down Motion of A Floating Body 被引量:2
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作者 WANG Bin TANG You-gang +2 位作者 LIU Li-qin LI Yan QU Xiao-qi 《China Ocean Engineering》 SCIE EI CSCD 2017年第2期210-219,共10页
The dynamic analysis of a Tension Leg Platform (TLP) in random wave is investigated by considering the set-down of a floating body. The nonlinear restoring stiffness is derived with the set-down motion of a floating b... The dynamic analysis of a Tension Leg Platform (TLP) in random wave is investigated by considering the set-down of a floating body. The nonlinear restoring stiffness is derived with the set-down motion of a floating body and the coupled motion of the tension leg and platform and the differential equations of the motion are established. The study focuses on the influence of the set-down motion on the nonlinear response of the platform. By considering different significant wave heights and currents, motion responses of the platform are calculated and compared. The analysis shows that the set-down motion significantly increases the heave motion with low frequency and the equilibrium position of the heave motion with the set-down motion is much lower than that without set-down motion. The results in this paper indicate that the set-down motion has a major impact on the safety of the platform inproduction operation, and it is also a threat to the strength of tension legs and risers. 展开更多
关键词 Tension Leg platform(TLP) set-down NONLINEAR restoring stiffness random wave coupled motion
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Kinect-Based Motion Recognition Tracking Robotic Arm Platform 被引量:2
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作者 Jinxiao Gao Yinan Chen Fuhao Li 《Intelligent Control and Automation》 2019年第3期79-89,共11页
The development of artificial intelligence technology has promoted the rapid improvement of human-computer interaction. This system uses the Kinect visual image sensor to identify human bone data and complete the reco... The development of artificial intelligence technology has promoted the rapid improvement of human-computer interaction. This system uses the Kinect visual image sensor to identify human bone data and complete the recognition of the operator’s movements. Through the filtering process of real-time data by the host computer platform with computer software as the core, the algorithm is programmed to realize the conversion from data to control signals. The system transmits the signal to the lower computer platform with Arduino as the core through the transmission mode of the serial communication, thereby completing the control of the steering gear. In order to verify the feasibility of the theory, the team built a 4-DOF robotic arm control system and completed software development. It can display other functions such as the current bone angle and motion status in real time on the computer operation interface. The experimental data shows that the Kinect-based motion recognition method can effectively complete the tracking of the expected motion and complete the grasping and transfer of the specified objects, which has extremely high operability. 展开更多
关键词 KINECT ARDUINO BONE Angle motion TRACKING Robotic Arm platform
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6-DOF Motion Assessment of A Hydrodynamic Numerical Simulation of A Semisubmersible Platform Using Prototype Monitoring Data 被引量:1
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作者 LI Song WU Wen-hua YAO Wei-an 《China Ocean Engineering》 SCIE EI CSCD 2022年第4期575-587,共13页
Hydrodynamic numerical simulations are used to conduct structural analyses and inform the design of engineered marine structures.In this paper,a hydrodynamic numerical model of“Nanhai Tiaozhan”(NHTZ)FPS platform was... Hydrodynamic numerical simulations are used to conduct structural analyses and inform the design of engineered marine structures.In this paper,a hydrodynamic numerical model of“Nanhai Tiaozhan”(NHTZ)FPS platform was established according to its design specifications.The model was assessed with two sets of field monitoring data representing harsh and conventional sea states.The motion responses of the platform according to the measured data and the hydrodynamic simulation were compared by reviewing their statistical characteristics,distributions,and spectrum characteristics.The comparison showed that the hydrodynamic model could correctly simulate the frequency domain characteristics of the motion responses of the platform.However,the simulation underestimated the reciprocating motions of the floating body and the influence of slow drift on the motion of the platform.Meanwhile,analysis of the monitoring data revealed that the translational degrees of freedom(DOF)and rotational DOF of the platform were coupled,but these coupled motion states were not apparent in the hydrodynamic simulation. 展开更多
关键词 prototype monitoring hydrodynamic numerical simulation statistical characteristics semisubmersible platform reciprocating motions
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Numerical Simulation of Motion Response of an Offshore Observation Platform in Waves 被引量:8
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作者 Yuanchuan Liu Decheng Wan 《Journal of Marine Science and Application》 2013年第1期89-97,共9页
Offshore observation platforms are required to have great ability to resist waves when they are operating at sea. Investigation on the motion characteristics of the platforms in the sea can provide significant referen... Offshore observation platforms are required to have great ability to resist waves when they are operating at sea. Investigation on the motion characteristics of the platforms in the sea can provide significant reference values during the platform design procedure. In this paper, a series of numerical simulation on the interaction of a triple-hulled offshore observation platform with different incident waves is carried out. All of the simulations are implemented utilizing our own solver naoe-FOAM-SJTU, which is based and developed on the open source tools of OpenFOAM. Duration curves of motion characteristics and loads acting on the platform are obtained, and a comparison between the results of the amplitude in different incident waves is presented. The results show that the solver is competent in the simulation of motion response of platforms in waves. 展开更多
关键词 offshore observation platform motion characteristics naoe-FOAM-SJTU solver finite volume method (FVM) pressure-implicit-split-operator (PISO)
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Investigation of Pitch Motion Portion in Vertical Response at Sides of a Tension-Leg Platform
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作者 Mohammad Reza Tabeshpour Ebrahim Malayjerdi 《Journal of Marine Science and Application》 CSCD 2016年第2期175-181,共7页
Tendons vertically moor Tension-Leg Platforms (TLPs), thus, a deep understanding of physical tendon stresses requires the determination of the total axial deformation of the tendons, which is a combination of the he... Tendons vertically moor Tension-Leg Platforms (TLPs), thus, a deep understanding of physical tendon stresses requires the determination of the total axial deformation of the tendons, which is a combination of the heave, pitch, and surging responses. The vertical motion of the lateral sides of the TLP is coupled with surge and constitutes a portion of the pitch motion. Tendons are connected to the sides of the TLP; hence, the total displacement of the lateral sides is related to the total deformation of the tendons and the total axial stress. Therefore, investigating the total vertical response at the sides of the TLP is essential. The coupling between various degrees of freedom is not considered in the Response Amplitude Operator (RAO). Therefore, in frequency domain analysis, the estimated vertical RAO is incomplete. Also, in the time domain, only the heave motion at the center of TLP is typically studied; this problem needs to be addressed. In this paper, we investigate the portion of the pitch motion in the vertical response at the sides of the TLP in both the frequency and time domains. Numerical results demonstrate a significant effect of the pitch motion in the vertical motion of the edges of the TLP in some period ranges. 展开更多
关键词 tension-leg platform heave motion pitch motion response amplitude operator sides of TLP frequency domain timedomain
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Marine Predator Algorithm-based Sliding Mode Control of a Novel Motion Simulator for High Column Sloshing Experiments
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作者 DU Zun-feng CHEN Xiang-yu +2 位作者 BAI Hao ZHU Hai-ming HAN Mu-xuan 《船舶力学》 EI CSCD 北大核心 2024年第12期1835-1848,共14页
Sloshing experiment is crucial to determine the reaction performance of regeneration columns on an offshore floating platform.A novel type of column motion simulating device and a Marine Predator Algorithm-based Slidi... Sloshing experiment is crucial to determine the reaction performance of regeneration columns on an offshore floating platform.A novel type of column motion simulating device and a Marine Predator Algorithm-based Sliding Mode Controller(MPA-SMC)are proposed for such sloshing experiments.The simulator consists of a Stewart platform and a steel framework.The Stewart platform is located at the column's center of gravity(CoG)and supported by the steel framework.The platform's hydraulic servo system is controlled by a sliding mode controller with parameters optimized by MPA to improve robustness and precision.A numerical sloshing experiment is conducted using the proposed device and controller.The results show that the novel motion simulator has lower torque during the column sloshes,and the proposed controller performs better than a well-tuned PID controller in terms of target tracking precision and anti-interference capability. 展开更多
关键词 regeneration column sloshing experiment motion simulator Stewart platform sliding mode control marine predator algorithm
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基于三维运动捕捉技术构建蒙医震脑术三维虚拟仿真平台的视觉呈现 被引量:4
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作者 白雪 王星 +6 位作者 洪国萍 贾茹铄 韩琦 郭怀钰 牛泓凯 张少杰 朝鲁门 《中国组织工程研究》 CAS 北大核心 2025年第18期3826-3832,共7页
背景:基于三维运动捕捉技术可以构建精准的、客观量化的医学虚拟仿真模型,有利于临床学习者精准、深入理解和掌握各种传统疗术。目前中医虚拟仿真模型已有报道,但蒙医传统疗术的虚拟仿真模型尚未见报道。目的:构建一种基于三维运动捕捉... 背景:基于三维运动捕捉技术可以构建精准的、客观量化的医学虚拟仿真模型,有利于临床学习者精准、深入理解和掌握各种传统疗术。目前中医虚拟仿真模型已有报道,但蒙医传统疗术的虚拟仿真模型尚未见报道。目的:构建一种基于三维运动捕捉技术的交互式三维可视化的蒙医震脑术虚拟仿真模型。方法:使用Motion Analysis三维光学运动捕捉系统和足底测力台采集蒙医专家的运动捕捉数据,在Motion Builder软件中构建震脑术三维动作模型,使用Maya软件构建角色模型并与动作模型相匹配,运动Unity3D软件构建蒙医震脑术虚拟仿真系统,系统整合蒙医震脑术操作3D动画、运动学和动力学参数信息。结果与结论:通过三维运动捕捉技术和计算机仿真重现蒙医震脑术操作,能够显示施术者和受试者的运动姿态,记录关节运动的关键空间位置参数与变化情况,得出运动过程中的运动学、动力学参数。运用交互式三维虚拟仿真技术,实现蒙医震脑术的三维虚拟仿真的视觉呈现,为蒙医震脑术手法的标准化、数字化、可视化研究奠定基础。 展开更多
关键词 蒙医震脑术 三维运动捕捉技术 足底测力台 Anybody 虚拟仿真 三维可视化 motion Builder MAYA UNITY3D 人工智能
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基于激光干涉仪对天文底片扫描仪两轴气浮运动平台垂直度的测量 被引量:1
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作者 王亮亮 商正君 +4 位作者 杨美婷 杨静 董姗 赵建海 于涌 《工业控制计算机》 2025年第1期4-6,9,共4页
上海天文台开展高精度天文底片专用扫描仪的自主研制,垂直度误差是扫描仪所用两轴线性气浮运动平台的关键技术指标之一。基于直线度的干涉测量原理,使用RENISHAW XL80激光干涉仪及光学直角尺搭建垂直度测量光路,对两轴线性气浮式运动平... 上海天文台开展高精度天文底片专用扫描仪的自主研制,垂直度误差是扫描仪所用两轴线性气浮运动平台的关键技术指标之一。基于直线度的干涉测量原理,使用RENISHAW XL80激光干涉仪及光学直角尺搭建垂直度测量光路,对两轴线性气浮式运动平台的垂直度误差进行了测量。测量结果表明:在450 mm×450 mm工作范围内,气浮运动平台两个运动轴的垂直度误差为1.356″,标准偏差为0.121″,满足高精度天文底片扫描仪研制的要求。使用光学直角尺的激光干涉测量方法具备光路布置简便和测量效率高的特点,适合气浮运动平台垂直度的日常检测和标校。 展开更多
关键词 激光干涉仪 气浮运动平台 直线度 垂直度
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基于运动平台的舰船操纵模拟器关键技术综述
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作者 彭利坤 王晨宇 +3 位作者 吕帮俊 陈佳 黄斌 潘炜 《舰船科学技术》 北大核心 2025年第16期1-6,共6页
本文综述基于运动平台国内外舰船操纵模拟器的发展现状,总结分析六自由度运动平台的反解、控制策略,不同模拟器洗出算法的侧重点和性能指标,舰船运动数学模型的参数化与非参数化建模等关键技术。通过对现有研究的分析,指出未来基于运动... 本文综述基于运动平台国内外舰船操纵模拟器的发展现状,总结分析六自由度运动平台的反解、控制策略,不同模拟器洗出算法的侧重点和性能指标,舰船运动数学模型的参数化与非参数化建模等关键技术。通过对现有研究的分析,指出未来基于运动平台的舰船操纵模拟器的发展将会朝着更智能化、沉浸式方向发展,为进一步研发高逼真度舰船操纵模拟器提供有益参考。 展开更多
关键词 舰船操纵模拟器 运动平台 洗出算法 舰船操纵数学模型
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液压放大式两自由度压电微动平台建模仿真与控制
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作者 许有熊 庄广锋 +1 位作者 朱松青 陈星宇 《机床与液压》 北大核心 2025年第4期199-204,共6页
传统微动平台采用压电加柔性铰链的方式,存在柔性铰链刚度低、承受载荷小、易损坏等问题。针对此,将压电和液压放大技术的优点应用到微动平台上,提出一种液压放大式两自由度压电微动平台,建立其数学模型,分析其工作机制和性能特点。利用... 传统微动平台采用压电加柔性铰链的方式,存在柔性铰链刚度低、承受载荷小、易损坏等问题。针对此,将压电和液压放大技术的优点应用到微动平台上,提出一种液压放大式两自由度压电微动平台,建立其数学模型,分析其工作机制和性能特点。利用AMESim软件对液压放大机构进行结构性能仿真。结果表明:在腔体体积小、弹簧刚度小的情况下,液压放大机构的位移放大效果最好。搭建AMESim与MATLAB的联合仿真模型进行动态仿真。结果表明:所提液压放大式两自由度压电微动平台能实现高精度定位,为后续的实际应用奠定了基础。最后通过实验验证了仿真结果的准确性。 展开更多
关键词 微动平台 压电 液压放大 动态仿真 实验研究
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双基地SAR成像处理方法综述
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作者 武俊杰 杨建宇 +4 位作者 李中余 蒲巍 孙稚超 安洪阳 杨青 《雷达学报(中英文)》 北大核心 2025年第5期1115-1141,共27页
双基合成孔径雷达(SAR)采用收发平台分置的方式,能够实现复杂环境下对地海面场景和目标的高分辨成像,具有配置灵活、隐蔽性好、抗干扰能力强、获取目标信息丰富等优势,在高精度遥感测绘、隐蔽成像、精确打击等多个领域具备重要应用价值... 双基合成孔径雷达(SAR)采用收发平台分置的方式,能够实现复杂环境下对地海面场景和目标的高分辨成像,具有配置灵活、隐蔽性好、抗干扰能力强、获取目标信息丰富等优势,在高精度遥感测绘、隐蔽成像、精确打击等多个领域具备重要应用价值。成像处理是获得双基SAR高分辨图像的关键步骤,而双基SAR的回波模型、回波特性与传统单基SAR有显著的不同,需要对处于不同模式、不同构型下的双基SAR研究相应的成像处理方法。该文分别针对机载双基SAR、高速高机动平台双基SAR、星源异构双基SAR、星载同构双基SAR等典型模式,以及双基SAR运动补偿方法和运动目标成像等方面,分别阐述和分析了其中的关键问题,并梳理了国内外相关的解决思路和研究进展,最后对双基SAR成像处理技术的未来发展趋势进行展望。 展开更多
关键词 双基合成孔径雷达 成像处理 运动补偿 高机动平台 动目标成像
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多机器人系统虚拟仿真实验教学平台设计与实现
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作者 杨亮 邓伟俊 +1 位作者 沈慧 蔡川华 《现代电子技术》 北大核心 2025年第14期147-153,共7页
相较于传统单机器人,多机器人系统在效率、容错性能、鲁棒性等方面有着显著优势,但其也存在硬件成本高、占地面积大等缺点,这些都限制了与多机器人相关的实验课程开展。针对以上问题,提出一种基于虚拟样机技术的多机器人协同控制实验平... 相较于传统单机器人,多机器人系统在效率、容错性能、鲁棒性等方面有着显著优势,但其也存在硬件成本高、占地面积大等缺点,这些都限制了与多机器人相关的实验课程开展。针对以上问题,提出一种基于虚拟样机技术的多机器人协同控制实验平台设计方案。该实验平台由虚拟样机仿真子系统、上位机控制子系统、机器人本体三部分组成,其中虚拟样机仿真子系统负责完成环境建模、动力学仿真、传感数据采集等任务,上位机控制子系统通过网络接口与虚拟样机仿真子系统联动,以实现多机器人的协同控制。实践结果表明,该实验平台具有部署成本低、操作简单、可扩展性强的优点,能够有效提高学生的工程应用能力和创新意识。 展开更多
关键词 多机器人 仿真教学平台 协同控制 虚拟样机 人机交互 视觉伺服 运动轨迹
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