Description: 该程序为AVR单片机的PID控制算法程序,适用AVR单片机,对其它类型的单片机也有参考作用。-procedures for the AVR PID control algorithm procedures applicable AVR microcontroller, for other types of SCM is a useful reference. Platform: |
Size: 5120 |
Author:李璇 |
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Description: 一个用AVR单片机做的PID炉温控制器,基于C语言,在GCC环境下编译通过。-A single-chip AVR to do with the PID temperature controller, based on the C language, in the GCC compiler environment through. Platform: |
Size: 93184 |
Author: |
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Description: This paper present a new method to determine the
optimal tuning of the PID controller parameter of an AVR
system using Modified particle swarm optimization (MPSO)
algorithm-This paper present a new method to determine the
optimal tuning of the PID controller parameter of an AVR
system using Modified particle swarm optimization (MPSO)
algorithm Platform: |
Size: 474112 |
Author:reznvtb |
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Description: Simple PID Controller designed based on AVR micro controllers with codevisio-Simple PID Controller designed based on AVR micro controllers with codevisionn Platform: |
Size: 70656 |
Author:farshid |
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Description: motor controller by PID algorithm. it can be opened by codevision 2.2 or later. it shows how could you read encoder and calculate speed of motor in real time and control speed of motor. Platform: |
Size: 133120 |
Author:pooya |
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Description: 基于粒子群算法的avr系统pid优化,A Particle Swarm Optimization Approach for
Optimum Design of PID Controller in AVR System-A Particle Swarm Optimization Approach for Optimum Design of PID Controller in AVR System, novel design method for determining the optimal proportional-integral-derivative (PID) controller parameters of an AVR system using the particle swarm optimization (PSO) algorithm。 Platform: |
Size: 689152 |
Author:赵小志 |
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Description: pid controller for control of temprature of hitter with codevision avr and with use micro atmega32. Platform: |
Size: 2048 |
Author:saghar |
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Description: This paper presents the design of an intelligent fuzzy
gain scheduled proportional-integral (FGSPI) controller as the
supplementary controller for load frequency control (LFC) of
two-area interconnected power system with reheat type thermal
unit of equal capacity in each area. The dynamic response has
been studied for 1% step load perturbation in area-1. The
proposed FGSPI controller is compared against conventional
proportional-integral (PI) controller and state feedback linear
quadratic regulator (LQR) controller using settling times,
overshoots and undershoots of the tie-line power and frequency
deviations as performance indices. Comparative analysis
indicates that the proposed intelligent controller gives better
performance than conventional controllers. Platform: |
Size: 304128 |
Author:phdscolar11
|
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