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通过对数学模型的分析建
立了无刷直流电机仿真模型,用双闭环控制进行了仿真,验证了模型的可行性
-Through the analysis of mathematical models to establish simulation model of brushless DC motor, with double-loop control of the simulation to verify the feasibility of the model
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本课题主要是在Simulink环境中对双闭环直流调速系统进行仿真设计,具体内容有:对电流调节器和转速调节器进行校正设计;对电流环和转速环进行时域和频域分析;对调速系统进行跟随性和抗扰性分析。-This issue is mainly in the Simulink environment on the Double Loop DC Speed Control System simulation with the specific content: The current regulator an
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Matlab/Simulink 电力拖动自动控制系统 直流调速系统 - Matlab/Simulink DC motor double closed loop speed control system MATLAB simulation
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调压调速 matlab simulink仿真-AC motor double closed loop speed control system MATLAB simulation
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变压变频调速 matlab simulink仿真-AC motor double closed loop speed control system MATLAB simulation
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交流异步电动机 矢量控制 matlab simulink仿真-AC motor double closed loop speed control system MATLAB simulation
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交流异步电动机稳态模型 matlab simulink仿真 变压变频调速 调压调速-AC motor double closed loop speed control system MATLAB simulation
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在分析无刷直流电机(BLDC)数学模型的基础上,提出了无刷直流电机系统仿真建模的新方法.在Matlab/Simulink中,建立独立的功能模块,如BLDC本体模块、电流滞环控制模块、速度控制模块等,再进行功能模块的有机整合,搭建无刷直流电机系统的仿真模型.为保证仿真快速性和有效性,模型采用分段线性法生成梯形波反电动势,系统采用双闭环控制:速度环采用PI控制,电流环采用滞环电流控制.仿真结果证明了该方法的有效性,同时也适用于验证其他控制算法的合理性,为实际电机控制系统的设计和调试提供了新的思路.-
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The paper deals with a controller design for the nonlinear processes using genetic
algorithm and neural model. The aim was to improve the control performance using
genetic algorithm for optimal PID controller tuning. The plant model has been
id
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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
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Motor-Propeller Damped Compound Pendulum
video of open-loop pendulum system
PCB solder side artwork (2X scale)
Simulink file for PID control
LabVIEW VI file for PID control
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A proportional-integral-derivative controller (PID controller) is a control loop feedback mechanism (controller) widely used in industrial control systems. A PID controller calculates an error value as the difference between a measured process variab
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A proportional-integral-derivative controller (PID controller) is a control loop feedback mechanism (controller) widely used in industrial control systems. A PID controller calculates an error value as the difference between a measured process variab
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无刷直流电机闭环控制;双闭环;simulink模块仿真(Brushless DC motor double closed loop control)
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Simulink 仿真模型 PMSM 永磁同步电机 SVPWM 矢量速度控制闭环(Simulink simulation model, PMSM permanent magnet synchronous motor, SVPWM vector speed control, closed-loop)
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