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国家自然科学基金(60704025)

作品数:8 被引量:53H指数:4
相关作者:魏彤房建成丁力刘珠荣徐向波更多>>
相关机构:北京航空航天大学更多>>
发文基金:国家自然科学基金更多>>
相关领域:航空宇航科学技术自动化与计算机技术机械工程更多>>

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一种抑制扰动的轴向磁轴承鲁棒控制新方法被引量:6
2010年
从鲁棒稳定性和抑制扰动的动态性能角度,分析了干扰观测器应用到轴向磁轴承时其有效带宽较低的问题,指出磁轴承易受到低频干扰并提出了一种抑制扰动鲁棒控制方法.基于动态分析建立了轴向磁轴承的名义模型,并设计了内环控制的干扰观测器,采用标准H∞问题的方法设计抑制扰动鲁棒控制器作为外环控制.仿真分析与实验说明了该方法能够提高干扰观测器的带宽,同时,实验验证了对于系统参数不确定性具有较强的鲁棒性能,对比单一的控制方法具有良好的抑制扰动能力.
丁力房建成魏彤郑世强
关键词:磁轴承干扰观测器鲁棒控制
基于干扰观测器的磁悬浮转子扰动抑制方法被引量:4
2009年
针对磁轴承高精度的要求,提出了基于干扰观测器的磁轴承抑制扰动的控制方法,建立了磁轴承的广义被控对象模型,分析并设计了多变量的干扰观测器和分散控制系统,对其进行的仿真分析表明,设计的系统具有良好的稳定性与扰动抑制性能。最后试验验证了干扰观测器作用时转子位移比未加入干扰观测器时降低了63.8%,该控制系统能够大幅度提高转子受扰动时的精度,增强了抑制外界扰动的能力。
丁力房建成魏彤
关键词:磁轴承稳定性干扰观测器
采用线性求角的旋变轴角解码与激磁系统被引量:9
2009年
设计了一种基于单片DSP的旋变轴角解码与激磁系统并进行了实验验证。由于轴角解码中反正切运算需要很大运算量或很多数据空间存储查表值,甚至需要外扩存储芯片,因此,提出一种反正切运算补偿成分区间的线性运算求角方法。同时,在保证测角精度的基础上降低旋变激磁的电压幅值,从而实现了旋变轴角解码与激磁系统的高集成度与低功耗。实验结果显示:测角精度可达0.013°,框架电机速率精度达到0.000 4°/s。体积、质量、功耗与原激磁电源模块JD20-D15C36MK和轴角解码模块19XSZ2413相比均减少80%以上,很好地满足了航天应用小体积、轻质量和低功耗的要求。
房建成徐向波魏彤
基于双频Bode图设计磁悬浮弹性转子陷波器被引量:4
2008年
提出一种基于双频Bode图的陷波器(NF)参数设计方法,采用双频Bode图分析转子弹性模态稳定性,得出不同转子转速下对NF相位校正角的要求,然后在保证转子章动稳定性的前提下优化设计NF参数。采用该方法设计的NF有效地抑制了转子的弹性自激振荡,使所研制的磁悬浮控制力矩陀螺稳定升速到20 000 r/min,从而验证了该方法的实用性和有效性。
魏彤房建成
关键词:控制力矩陀螺自激振荡陷波器
Modeling and Analysis of Novel Integrated Radial Hybrid Magnetic Bearing for Magnetic Bearing Reaction Wheel被引量:8
2010年
Conventional ball bearing reaction wheel used to control the attitude of spacecraft can't absorb the centrifugal force caused by imbalance of the wheel rotor,and there will be a torque spike at zero speed,which seriously influences the accuracy and stability of spacecraft attitude control.Compared with traditional ball-bearing wheel,noncontact and no lubrication are the remarkable features of the magnetic bearing reaction wheel,and which can solve the high precision problems of wheel.In general,two radial magnetic bearings are needed in magnetic bearing wheel,and the design results in a relatively large axial dimension and smaller momentum-to-mass ratios.In this paper,a new type of magnetic bearing reaction wheel(MBRW) is introduced for satellite attitude control,and a novel integrated radial hybrid magnetic bearing(RHMB) with permanent magnet bias is designed to reduce the mass and minimize the size of the MBRW,etc.The equivalent magnetic circuit model for the RHMB is presented and a solution is found.The stiffness model is also presented,including current stiffness,position negative stiffness,as well as tilting current stiffness,tilting angular position negative stiffness,force and moment equilibrium equations.The design parameters of the RHMB are given according to the requirement of the MBRW with angular momentum of 30 N ? m ? s when the rotation speed of rotor reaches to 5 kr/min.The nonlinearity of the RHMB is shown by using the characteristic curves of force-control current-position,current stiffness,position stiffness,moment-control current-angular displacement,tilting current stiffness and tilting angular position stiffness considering all the rotor position within the clearance space and the control current.The proposed research ensures the performance of the radial magnetic bearing with permanent magnet bias,and provides theory basis for design of the magnetic bearing wheel.
HAN Bangcheng
基于简化FXLMS算法的磁悬浮控制力矩陀螺动框架效应精确补偿方法实验研究被引量:4
2010年
磁悬浮控制力矩陀螺(MSCMG)是一种用于航天器姿态控制的高精度长寿命惯性执行机构,动框架效应补偿是MSCMG实现高精度性能的关键技术之一。然而现有的FXLMS补偿算法由于模型复杂、计算量大而难以实际应用。通过分析MSCMG磁轴承对象特性,提出一种简化FXLMS算法,将对象滤波器简化为常数对角阵,大幅度减少了算法计算量。对简化算法进行了仿真,并在MSCMG样机上面进行了动框架效应补偿实验。实验结果表明:简化后的自适应控制系统,收敛性好,跟踪速度快,具有理想的精度和较强的鲁棒性。
霍甲魏彤房建成
关键词:磁轴承控制力矩陀螺收敛性
Integrated Power and Single Axis Attitude Control System with Two Flywheels被引量:1
2012年
The existing research of the integrated power and attitude control system(IPACS) in satellites mainly focuses on the IPACS concept,which aims at solving the coupled problem between the attitude control and power tracking.In the IPACS,the configuration design of IPACS is usually not considered,and the coupled problem between two flywheels during the attitude control and energy storage has not been resolved.In this paper,an integrated power and single axis attitude control system using two counter rotating magnetically suspended flywheels mounted to an air table is designed.The control method of power and attitude control using flywheel is investigated and the coupling problem between energy storage and attitude control is resolved.A computer simulation of an integrated power and single axis attitude control system with two flywheels is performed,which consists of two counter rotating magnetically suspended flywheels mounted to an air rotary table.Both DC bus and a single axis attitude are the regulation goals.An attitude & DC bus coordinator is put forward to separate DC bus regulation and attitude control problems.The simulation results of DC bus regulation and attitude control are presented respectively with a DC bus regulator and a simple PD attitude controller.The simulation results demonstrate that it is possible to integrate power and attitude control simultaneously for satellite using flywheels.The proposed research provides theory basis for design of the IPACS.
HAN Bangcheng
双框架磁悬浮控制力矩陀螺动框架效应补偿方法被引量:20
2010年
双框架磁悬浮控制力矩陀螺(Double gimbal magnetically suspended control moment gyroscope,DGMSCMG)是由磁悬浮高速转子系统与内框架、外框架速率伺服系统构成的航天器新型姿控执行机构。由于非线性及三个子系统间的强耦合,框架转动时磁悬浮转子位移急剧增大影响稳定性,同时框架系统的响应速度显著下降,称之为动框架效应。该效应严重影响了DGMSCMG的功能,必须加以抑制。建立DGMSCMG的动力学模型,分析三个子系统间的动力学耦合机理,提出一种基于复合控制的补偿方法,引入针对陀螺项的反馈和针对框架角速率给定的前馈消除磁悬浮转子附加位移,提高框架系统响应速度,并对补偿后系统做全局稳定性分析。仿真和试验结果表明,该方法能在保证系统稳定性的前提下有效抑制动框架效应,满足DGMSCMG的功能要求。
魏彤房建成刘珠荣
关键词:双框架控制力矩陀螺磁轴承陀螺效应复合控制线性化
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