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2下载:
针对光伏并网发电系统中关健部件—逆变器的结构设计与控制方法研究进行了详细分析
和阐述。从电网、光伏阵列以及用户对逆变器的要求出发, 分析了各种不同的逆变器拓扑结构与控
制方法, 比较其运行效率和控制效果。对于本文提出了一种基于全桥变换器的正弦波逆变电源的整体设计
方案。文章首先对系统设计中将使用到的DC/DC变换器,DC/AC变
换器以及PWM控制技术在理论上进行了深入的研究。并讨论了数字
式PID控制算法的实现和在系统中的应用,还针对这种基于全桥变换
器的正
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Software for PID controller tuning PIDTOOL has been 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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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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matlab simulink 建模,实现永磁同步电机调速。pid控制-pmsm matlab simulink pid controller
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关于PID算法的基于matlab的simulink下的仿真,很好的资料,可以快速的帮助设计PID参数。-Under the simulink simulation matlab based on good information about the PID algorithm can quickly help design PID parameters.
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基于FPGA的增量式PID设计方法,Matlab、Simulink, Xilinx Block set-Incremental PID FPGA-based design methodology
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仿照Matlab simulink自带slcp例程建立的PID和模糊控制方程程序,用于模拟横梁-小球系统(或杆球系统)的模糊控制,程序带有动画演示功能-Inspired by Matlab-simulink s fuzzy control demo slcp , a simulation with animation for the ball-beam system fuzzy control was implemented here.
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It is well established that fast acting exciter with
high gain AVR can contribute to oscillatory instability in
power system. This type of instability is characterized by low
frequency (0.2 Hz to 2.0 Hz) oscillations. This type of
instability can
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利用matlab编写基于遗传算法优化PID控制器(Matlab programming PID controller)
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基于matlab/simulink永磁同步电机的模糊PID控制仿真模型,适用于永磁同步电机,仿真效果还可以(The fuzzy PID control simulation model based on MATLAB / Simulink is suitable for PMSM, and the simulation effect can also be)
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