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首页> 外文期刊>Journal of computer sciences >Design and Implementation of an Optimal Fuzzy Logic Controller Using Genetic Algorithm | Science Publications
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Design and Implementation of an Optimal Fuzzy Logic Controller Using Genetic Algorithm | Science Publications

机译:遗传算法的最优模糊逻辑控制器的设计与实现科学出版物

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> All control systems suffer from problems related to undesirable overshoot, longer settling times and vibrations while going form one state to another state. Most of relevant techniques had been in the form of suggesting modification and improvement in the instrumentation or interfacing part of the control system and the results reported, remain suffering from shortcomings related to hardware parameter dependence and maintenance and operational complexities. Present study was based on a software approach which was focusing on an algorithmic approach for programming a PIC16F877A microcontroller, for eliminating altogether the parametric dependence issues while adding the benefits of easier modification to suit a given control system to changing operational conditions. Said approach was first simulated using MATLAB/SIMULINK using the techniques of Proportional Derivative Fuzzy Logic Controller (PD-FLC) whose membership function, fuzzy logic rules and scaling gains were optimized by the genetic algorithm technique. Simulated results were verified by programming the PIC16F877A microcontroller with the algorithm and using it on a temperature control system where a fan was regulated in response to variations in the ambient system temperature. Resulting tabulated performance indices showed a considerable improvement in rising and settling time besides reducing overshoot and steady state error.
机译: >所有控制系统都会遇到与不希望的过冲,更长的建立时间和从一种状态到另一种状态的振动有关的问题。大多数相关技术的形式都是建议对控制系统的仪器或接口部分进行修改和改进,并报告结果,但仍存在与硬件参数依赖性,维护和操作复杂性有关的缺点。当前的研究基于一种软件方法,该方法侧重于一种用于对PIC16F877A单片机进行编程的算法方法,以完全消除参数依赖性问题,同时还增加了易于修改的优点,以适应给定的控制系统以适应不断变化的工作条件。首先通过MATLAB / SIMULINK使用比例微分模糊逻辑控制器(PD-FLC)的技术对上述方法进行仿真,该算法的隶属函数,模糊逻辑规则和缩放增益均通过遗传算法进行了优化。通过使用算法对该PIC16F877A单片机进行编程并在温度控制系统上使用该算法来验证仿真结果,在该温度控制系统中,风扇将根据周围系统温度的变化进行调节。所得列表化的性能指标显示,除了减少过冲和稳态误差外,上升和建立时间也有显着改善。

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