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电力牵引电机控制,设计的目的是用MatLab得到系统的状态空间模型,计算系统的传递函数。并预测系统的阶跃响应,并判断系统是否能控和能观。-Electric traction motor control, is designed to be used MatLab system state space model to calculate the system transfer function. And predict the system step response and determine
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基于单纯形无约束方法的PID参数整定。在myfun.m中输入目标函数和控制对象的传递函数,运行主函数即可得到阶跃响应曲线-Based on unconstrained simplex method of PID parameter tuning. Myfun.m enter in the objective function and control the transfer function of the object, run the main function can be obtained
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ex1_1 单位冲激序列
ex1_2 右移20的单位冲激序列
ex1_3 单位阶跃序列
ex1_4 实指数序列
ex1_5 复指数序列
ex1_6 随机序列
ex1_7 系统冲激响应(impz函数)
ex1_8 系统传递函数(freqz函数)
ex1_9 零极点增益
ex1_10 residuez函数应用
ex1_11 Lattice结构全极点IIR系统
ex1_12 Lattice结构全零点FIR系统
ex1_13 Lattice结构零极点结构-
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压缩包里面包含三个程序,分别是Nyquist图和bode图仿真,已知传递函数,求脉冲和阶跃响应,另一个自己研究一下就可以知道的-Compressed packet which contains three procedures, namely Nyquist diagram and bode diagram simulation, known transfer function, and impulse and step response, and the other to look at th
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专家pid控制仿真程序实例,,matlab,三阶传递函数的阶跃响应-Expert pid control simulation program example,, matlab, third-order transfer function step response
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采用专家PID设计控制器,实现三阶传递函数的阶跃响应-PID controller is designed by experts to achieve third-order transfer function of the step response
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paper about Identification of a Reduced
Order Wind Turbine Transfer
Function from the Turbine’s
Step Response
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求三阶传递函数的阶跃响应
其中对象采样时间为1ms。
采用专家PID设计控制器。在仿真过程中, 取0.001,程序中的五条规则与控制算法的五种情况相对应。
-Seeking third-order transfer function of the step response in which the object sampling time 1ms. PID controller is designed by experts. In the simulation process, t
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开环传递函数和反馈传递函数,采用比例调节器,求系统的阶跃响应,绘制响应曲线-Open-loop transfer function and the feedback transfer function,Proportional controller, find the system step response, response curve drawn
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对给定的二阶欠阻尼传递函数,编制一个函数程序,计算阶跃响应的特征参数
超调量б ,峰值时间Tp,上升时间Tr,过渡过程时间Ts(2 ) -For given second-order owe damping transfer function, prepare a function and calculation programs step response characteristic parameters of first
б overshoots, peak time, Tp T
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Software for PID controller tuning PIDTOOL 1.0 was developed in the
MATLAB – Simulink programming environment using its graphic user interface. The
main aim of the PIDTOOL design was creating user friendly tool for simple and fast
identificatio
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采用专家PID控制器解决三阶传递函数的阶跃响应-PID controller using expert to solve the third-order transfer function of the step response
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编制阶跃响应与方波响应相互转化的程序、由阶跃响应数据获得对象传递函数模型的通用程序、由阶跃响应数据获得对象微分方程模型的通用程序-Preparation step response transformed into each other with a square wave response procedures, and general program of the transfer function model from step response data, and general pro
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求分数阶传递函数的阶跃响应的matlab程序-Step response of the transfer function of Fractional matlab program
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基于matlab的标准闭环传递函数的阶跃响应,程序,自己编写的GUI,在GUI只需要输入阻尼系数的值即可。-Matlab-based standard step response of the closed-loop transfer function, procedures, write your own GUI in the GUI only need to enter the value of the damping coefficient can be.
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计算传递函数的上升时间,超调量,稳态误差,以及画出阶跃响应曲线-Calculate transfer function of the rise time, overshoot, steady-state error, and draw the step response curve
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本系统可做自动控制原理中的时域分析仿真实验,系统特性如下:
1:可选择仿真系统为一阶、二阶、任意阶
2:可选择信号源为正弦波、三角波、锯齿波、方波(可模拟阶跃信号),并可调节信号源频率、幅值、相位、偏移、方波占空比
3:可选择信号采样率及采样数
4:自动计算传递函数
5:自动计算时域响应参数(增益系数、上升时间、峰值、峰值时间、稳定时间、超调量)
6:波形图同时显示原始信号和响应信号
注:使用本系统需安装labview控制设计与仿真库-The system can d
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Second order transfer function as 50Hz bandpass filter step response
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已知系统转移函数,求冲击响应,阶跃响应,幅频响应和相频响应-Known system transfer function, impulse response seeking, step response, frequency response and phase-frequency response
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编制阶跃响应与方波响应相互转化的程序、由阶跃响应数据获得对象传递函数模型的通用程序、由阶跃响应数据获得对象微分方程模型的通用程序。并通过一个传递函数进行验证(阶跃响应和方波响应数据可利用simulink生成)(A program for converting step response to square wave response, a general program for obtaining transfer function model from step response data,
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