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DSP11
- 基于DSP的永磁交流伺服控制系统开发 本论文在分析了PMSM的结构、运动原理及数学模型的基础上,系统地阐述了PMSM交流伺服系统矢量控 制的基本原理、坐标变换方法及空间矢量脉冲宽度调制(PWM)波的生成算法,论述了PI控制算法和 速度位置计算方法。在MATLAB仿真软件环境下建立了交流伺服系统的仿真模型,并对模型进行了仿真-DEVELOPMENT OF THE PERMANENT AC SERVO CONTROL SYSTEM BASED ON DSP
SimpleProjectV5
- Induction machine PWM control using PI and ANFIS
1451-48691001057S
- Abstract: In this paper the SIMULINK model of a PWM controlled DC-DC converter is modeled using switching function concept to control the speed of the DC motor. The presence of the voltage oscillation cycles due to higher switching frequency in
cospiacd
- Abstract: In this paper the SIMULINK model of a PWM controlled DC-DC converter is modeled using switching function concept to control the speed of the DC motor. The presence of the voltage oscillation cycles due to higher switching frequency in
JPtpenov95p680
- Abstract: In this paper the SIMULINK model of a PWM controlled DC-DC converter is modeled using switching function concept to control the speed of the DC motor. The presence of the voltage oscillation cycles due to higher switching frequency in
IFOC_IREG
- IFOC,Current PI regulator, Modul ’PWM’, Modul ’Ramp compare register, Modul ’Ramp generator, Modul ’Inverter’, Modul ’Arm a (b, c)’,
Asynchronous-motor-simulation
- 首先,介绍了交流调速及其相关技术的发展现状和发展趋势,以及交流调速系统的主要控制策略。选用工业变频器用异步电机作为研究对象,利用坐标变换理论,分析了异步电机在三相静止坐标系、两相静止与旋转坐标下的电机基本数学模型及其矢量控制原理。利用转子磁场定向的矢量控制技术,实现了异步电机定子电流的转矩分量和励磁分量的解耦。分析了空间矢量脉宽调制算法以及实现方法,最后设计了异步电机的双闭环矢量控制系统。 然后,利用Matlab/Simulink搭建了异步电机数学模型,建立了基于电压空间矢量脉宽调制的异步电
Control-of-Three-Phase-PWM-Rectifiers
- As I have marked in the attached image, there is a PI controller, which is not necessarily a PI controller and could have several poles or zeroes. I have simulated this system nearly successfully and the only thing I am struggling with is the co
PWMrectfier
- In this paper, simulation and practical implementation of direct power control is presented for a PWM Rectifier application. The proposed DPC control has several advantages, including the grid current very close to sinusoidal waveforms (TDH <1