本论文设计了一个开关磁阻电机调速系统。
This thesis designed a switch reluctance dynamo speed control system.
开关磁阻电机是一种新型的直流控制电机。
控制参数对开关磁阻电机振动影响的研究。
振动和噪声问题阻碍了开关磁阻电机的推广应用。
The problems of vibration and acoustic noise limit the application of Switched Reluctance Motors.
本文旨在将直接转矩控制策略应用于开关磁阻电机。
The thesis is aimed to apply the Direct Torque Control on the Switched Reluctance Motor.
磁悬浮开关磁阻电机结合了同步电机和磁轴承的优点。
Magnetic suspension switched reluctance motor has combined characteristics of synchronous motor and magnetic bearing.
通过分析开关磁阻电机的运行原理,确定了极数的选择。
Pole number is determined through analyzing the operation principles of switch reluctance motor.
阐述了拖动风机的开关磁阻电机调速系统(简称SRD)。
Switch reluctance motor governing system (for short SRD) of the drag_fan is introduced.
提出了开关磁阻电机驱动系统需要进一步研究探讨的问题。
Finally, it presented the drive system problems of SR motor, which is need to go further approach.
本文介绍了开关磁阻电机调速系统中电流检测器的特点和作用。
This paper reviews the characteristics and functions of current detectivedevice in the speed regulation system of the switched reluctance motors.
介绍用模糊自适应系统控制开关磁阻电机使转矩脉动减小的方法。
It is presented a method using fuzzy adaptive system to obtain torque ripple reduction in switched reluctance motor.
针对开关磁阻电机的特点,提出了神经元自适应PID控制的策略。
According to the characteristics of switched reluctance motor drive system, a kind of adaptive neuron PID control method is proposed in this passage.
因此本文着重研究了模糊逻辑控制在开关磁阻电机调速系统中的应用。
Therefore this article has emphatically studied on the application of fuzzy logic control in the switched reluctance motor drive system.
在类比了异步电机的基础上推导了开关磁阻电机的直接转矩控制方法。
It deduces the direct torque control for Switched Reluctance motor compared with the method used on the inductive motor.
双凸极永磁电机是在开关磁阻电机安装永磁体而构成的一种新型电机。
Doubly salient permanent magnet machine is based on Switched Reluctance Motor as add two pieces of permanent magnet in it.
主要论述了基于四电平功率变换电路的开关磁阻电机直接瞬时转矩控制。
In this paper, a direct instantaneous torque control (DITC) of switched reluctance motor (SRM) with a four-level converter is presented.
由于开关磁阻电机结构与运行原理特殊,其分析研究比其他电机相对困难。
The construction and operation principle of the Switched reluctance motor is special, so analysis and study of it is more difficult than other motors.
本文对开关磁阻电机在缺相状态启动和运行进行了分析,并进行了相关实验。
In this paper, starting and running of the switch reluctance motor in no-phase state is analyzed, and the relative experiments are carried out.
并结合直线开关磁阻电机控制特点,分析了斩波控制情况下的动态力速特性。
According to the control characteristic of linear switched reluctance motor, the dynamic thrust-speed characteristic is analyzed in chopping control.
基于开关磁阻电机(SRM)的电感模型,提出了一种新的无位置传感技术。
A sensorless control scheme for switched reluctance motor (SRM) drives based on inductance model was presented in this paper.
另一部分是利用开关磁阻电机的线性电感模型或者准线性模型进行建模分析。
One is programming by M files while the other one is based on linear inductance model or approximate linear inductance model.
提出了一种基于非线性模糊模型的开关磁阻电机(SRM)转子位置检测的方法。
Based on the nonlinear fuzzy model, an improved method of detecting rotor position for sensorless control of SRMs has been developed.
提出了一个基于开关磁阻电机电感模型的滑动模型观测器来估计电机的位置和速度。
A sliding mode observer is developed to estimate the rotor position and speed of switched reluctance motors (SRM) based on inductance model of SRM in this paper.
开关磁阻电机是由功率开关电路、双凸极磁阻电机及控制器构成的新型调速电动机系统。
The switched reluctance drive is a new variable-speed motor system which consists of power electronically-switched circuits, doubly salient reluctance motor and controller.
由于开关磁阻电机s RM结构及运行原理的特殊性,使得分析和设计较其它电机更为困难。
The analysis and design of switched reluctance motor (SRM) are more difficult than those of other kinds of motors because of its special structure and operation mechanism.
多极无刷旋转变压器采用乘法解调及信号合成得到适合开关磁阻电机驱动用的速度及位置信号。
The multiple brushless resolver uses multiplication demodulation and signal composition to achieve rate and position signals proper for driving switch reluctance motor.
多极无刷旋转变压器采用乘法解调及信号合成得到适合开关磁阻电机驱动用的速度及位置信号。
The multiple brushless resolver uses multiplication demodulation and signal composition to achieve rate and position signals proper for driving switch reluctance motor.
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