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采用matlab中的simulink实现模糊pid控制,以油箱为控制对象,很值得一看-Using matlab in simulink fuzzy pid control to the fuel tank for the control object, it is worth a visit
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实现了matlab的simulink中的模糊PID控制系统的仿真-fuzzy pid controller can be sinmued in matlab software
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This is PID control algortihms in Matlab/Simulink.
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MATLAB/SIMULINK 模糊PID控制 模糊PID控制-MATLAB/SIMULINK fuzzy PID control, fuzzy PID control
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simulink 仿真pid控制器 simulink pid controller which is simple to use-simulink pid controller which is simple to use
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直升机的三个姿态角的pid控制算法,matlab中的simulink仿真程序,配合最优pid设计算法,得到很好的控制效果-Three attitude angle of the helicopter pid control algorithm matlab in simulink simulation program, with the optimal pid design algorithm, well controlled
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在MATLAB的simulink环境中搭建的PID控制模型,用于温度控制-In the MATLAB simulink environment built PID control model for temperature control
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matlab仿真,关于模糊PID的仿真的编程,具体以三相混合步进电机的控制为背景,来仿真模拟-matlab program
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设计了一款模糊PID,以及和普通PID的对比,运行时间很短,能马上看到结果。模糊控制器为二输入,三输出.基于matlab的simulink仿真。-fuzzyPID and PID ,this controller is two input and three output.
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粒子群算法整定PID的算法,亲自调整,控制效果良好(pso-pid MATLAB m simulink)
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主要是MATLAB PID 仿真的程序,里面有simulink模型和M文件(Mainly MATLAB PID simulation program, which has Simulink model and M file)
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PID控制的matlab模型,有需要的看看,,(PID control model of Matlab/Simulink)
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基于matlab及simulink搭建的模糊pid控制系统,参数调试的非常好,控制效果好(Based on the fuzzy PID control system built by MATLAB and Simulink, the parameter debugging is very good, and the control effect is good.)
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用matlab中simulink仿真,模拟对一级倒立摆实现PID,极点配置和LQR控制(Using MATLAB Simulink simulation, the PID, pole assignment and LQR control for the inverted pendulum are simulated.)
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最大转矩电流比控制的电机仿真,PID控制(MATLAB/simulink model for motor control use MTPA)
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刘金琨《先进PID控制及MATLAB仿真》(Liu Jin Kun<Advanced PID control and MATLAB simulink>)
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神经网络控制,基于matlab编程算法。可以学习借鉴使用(Neural network control, based on MATLAB programming algorithm. You can learn from it.)
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增量型PID控制DCDC降压直流变换器仿真文件(matlab simulink DCDC)
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四旋翼无人机是一种具有六个自由度和四个输入的欠驱动强耦合、外型新颖结构简单的飞行器。由于其具有制造成本地、重量轻、体积小、操作简单、使用方便、隐身性好、对作战环境要求低的特点,使其能准确、高效的执行各种军事或民用任务,因此四旋翼无人机具有一定的军事和民用价值。本课题针对四旋翼无人机的特点和飞行原理,对其动力学分析以及运动控制的研究,利用牛顿—欧拉方程,建立了四旋翼无人机的动力学模型,并针对该模型设计了PID四通道控制系统,且在Matlab/Simulink仿真平台上,利用PID控制系统对四旋翼无
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linearized cstr control with pid
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