Rotation modulation technique is generally used to improve the performance of aviation and marine inertial navigation system.Considering of the performance requirements from current aerospace to MEMS micro-nano inerti...Rotation modulation technique is generally used to improve the performance of aviation and marine inertial navigation system.Considering of the performance requirements from current aerospace to MEMS micro-nano inertial device,this paper proposedrotary inertial device modulation technology application methods on the satellite.Firstly,taking the advantage ofultrasonic motor,like high resolution,fast response,electromagnetic compatibility,a lowmagnetic,high-precision and appropriate for use on satellite ultrasonic motor modulation turntable was developed.Then,through theoretical modeling and simulations,the rotation modulation technology was verified to improvethe precise of satellite attitude measurementeffectively,equivalent toimprove the accuracy of MEMS gyro over an order of magnitude.This work helpsachieve the application of rotation modulation technology in aerospace and acceleratethe promotion of the MEMS gyro in satellite attitude measurement.展开更多
To satisfy the requirement of developing a new generation of motorized treadmill for a famous domestic manufacturer, a brushless DC motor (BLDCM) driving and control system for motorized treadmill is developed. High...To satisfy the requirement of developing a new generation of motorized treadmill for a famous domestic manufacturer, a brushless DC motor (BLDCM) driving and control system for motorized treadmill is developed. High integration and reliability of this system are ensured under the condition that intelligent power module (IPM) is used and the protection module is included. Periodic current control method is applied to reduce the average current flowing through the armature winding of the motor when the treadmill is required to start with low speed while large load is added. Piecewise proportion-integration-differentiation (PID) control algorithm is applied to solve the problem of speed fluctuation when impulse load is added. The motorized treadmill of a new generation with the driving and control system has the advantages of high reliability, good speed stability, wide timing scope, low cost, and long life-span. And it is very promising for practical applications.展开更多
针对永磁同步电机下桥臂电流采样拓扑的无位置传感器控制系统,在低载波运行时受数字延时影响易导致位置估计精度低、电流纹波增大、稳定性差等问题,提出一种半周期计算、单采样双更新的空间矢量脉宽调制方法,有效减少系统数字延时。该...针对永磁同步电机下桥臂电流采样拓扑的无位置传感器控制系统,在低载波运行时受数字延时影响易导致位置估计精度低、电流纹波增大、稳定性差等问题,提出一种半周期计算、单采样双更新的空间矢量脉宽调制方法,有效减少系统数字延时。该方法在每个脉冲宽度调制(Pulse-Width Modulation,PWM)的载波过零处采样一次电流,并在采样结束后的半周期内完成目标电压矢量计算。考虑数字延时中电机转过的角度,将目标电压矢量在下一个PWM周期的前、后半周期输出,并分别补偿0.75 T s和1.25 T s等效延时(T s为PWM周期时间),以减小目标电压矢量与实际输出电压矢量之间的误差。将新方法应用于采用模型参考自适应速度观测器的永磁同步电机无位置传感器控制系统中,实验结果表明该方法位置估计精度高、电流纹波小,且可以稳定运行于额定负载、载波比为4.0的工况。展开更多
为了提高电动机的控制性能,用高性能微处理器DSP(Digital Signal Processor)和IPM(Intelligent Power Module)对已有的模拟控制系统进行了改进。系统由DSP最小系统、智能功率驱动模块、隔离模块等组成,用DSP汇编语言编程。与现有...为了提高电动机的控制性能,用高性能微处理器DSP(Digital Signal Processor)和IPM(Intelligent Power Module)对已有的模拟控制系统进行了改进。系统由DSP最小系统、智能功率驱动模块、隔离模块等组成,用DSP汇编语言编程。与现有的模拟控制电路相比,其结构简单。实验结果表明,系统调速范围可达到10~1000r/min,有较宽的调速范围。展开更多
为实现四旋翼飞行器稳定可靠性飞行控制,提出了以ATMEL公司AVR微控制器为核心IC(IntergratedCircuit)的MCU(Micro Control Unit)四旋翼飞行器控制系统。该系统由以无刷直流电机为动力核心的动力驱动系统、以微控制器及陀螺仪为核心的核...为实现四旋翼飞行器稳定可靠性飞行控制,提出了以ATMEL公司AVR微控制器为核心IC(IntergratedCircuit)的MCU(Micro Control Unit)四旋翼飞行器控制系统。该系统由以无刷直流电机为动力核心的动力驱动系统、以微控制器及陀螺仪为核心的核心控制系统、以2.4 GHz的无线遥控接收器为核心的无线遥控控制系统组成。采用脉冲宽度调制(PWM:Pulse Width Modulation)信号控制四旋翼控制动力驱动模块。通过对四旋翼工作模式与控制参数的研究,得到相应的控制算法,然后编程实现、模拟相应的飞行姿态。实验结果表明,四旋翼飞行器能稳定悬停、转向和三维控制。展开更多
基金supported by the Fundamental Research Funds for the Central Universities(No.NS2014092)the Natural Science Foundation of Jiangsu Province(No.SBK201343261)the Shanghai Aerospace Science and Technology Innovation Foundation(No.SAST2015035)
文摘Rotation modulation technique is generally used to improve the performance of aviation and marine inertial navigation system.Considering of the performance requirements from current aerospace to MEMS micro-nano inertial device,this paper proposedrotary inertial device modulation technology application methods on the satellite.Firstly,taking the advantage ofultrasonic motor,like high resolution,fast response,electromagnetic compatibility,a lowmagnetic,high-precision and appropriate for use on satellite ultrasonic motor modulation turntable was developed.Then,through theoretical modeling and simulations,the rotation modulation technology was verified to improvethe precise of satellite attitude measurementeffectively,equivalent toimprove the accuracy of MEMS gyro over an order of magnitude.This work helpsachieve the application of rotation modulation technology in aerospace and acceleratethe promotion of the MEMS gyro in satellite attitude measurement.
文摘To satisfy the requirement of developing a new generation of motorized treadmill for a famous domestic manufacturer, a brushless DC motor (BLDCM) driving and control system for motorized treadmill is developed. High integration and reliability of this system are ensured under the condition that intelligent power module (IPM) is used and the protection module is included. Periodic current control method is applied to reduce the average current flowing through the armature winding of the motor when the treadmill is required to start with low speed while large load is added. Piecewise proportion-integration-differentiation (PID) control algorithm is applied to solve the problem of speed fluctuation when impulse load is added. The motorized treadmill of a new generation with the driving and control system has the advantages of high reliability, good speed stability, wide timing scope, low cost, and long life-span. And it is very promising for practical applications.
文摘针对永磁同步电机下桥臂电流采样拓扑的无位置传感器控制系统,在低载波运行时受数字延时影响易导致位置估计精度低、电流纹波增大、稳定性差等问题,提出一种半周期计算、单采样双更新的空间矢量脉宽调制方法,有效减少系统数字延时。该方法在每个脉冲宽度调制(Pulse-Width Modulation,PWM)的载波过零处采样一次电流,并在采样结束后的半周期内完成目标电压矢量计算。考虑数字延时中电机转过的角度,将目标电压矢量在下一个PWM周期的前、后半周期输出,并分别补偿0.75 T s和1.25 T s等效延时(T s为PWM周期时间),以减小目标电压矢量与实际输出电压矢量之间的误差。将新方法应用于采用模型参考自适应速度观测器的永磁同步电机无位置传感器控制系统中,实验结果表明该方法位置估计精度高、电流纹波小,且可以稳定运行于额定负载、载波比为4.0的工况。
文摘为了提高电动机的控制性能,用高性能微处理器DSP(Digital Signal Processor)和IPM(Intelligent Power Module)对已有的模拟控制系统进行了改进。系统由DSP最小系统、智能功率驱动模块、隔离模块等组成,用DSP汇编语言编程。与现有的模拟控制电路相比,其结构简单。实验结果表明,系统调速范围可达到10~1000r/min,有较宽的调速范围。