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在基于频率特性的控制器参数自整定算法的研究中使用和撇混合编程进
行仿真实验, 利用两种语言的优势互补, 在实验速度与实时性方面有了很大提高。给出了实现设计的具体过
程, 使该算法从实验室仿真层次上向现场实际应用跨出了重要一步。-Based on the frequency characteristics of the controller parameters self-tuning algorithm and write off the use of hybrid programmin
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一种基于遗传算法的自调整模糊PID控制器-Genetic algorithm based self-tuning fuzzy PID controller
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windows异步串口编程,演示PC机和智能型仪表如何通过RS485接口进行通信,仪表采用百特公司XMA5000智能型专家自整定PID调节器-windows asynchronous serial programming, demonstrate PC and smart meters to communicate via RS485 interface, the instrument used Baxter XMA5000 intelligent expert self-tuning PID
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神经网络,神经自校正控制器的matlab仿真,神经网络控制与matlab仿。反馈线性化控制。-Neural networks, neural self-tuning controller matlab simulation, neural network control with Matlab simulation. Feedback linearization control.
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模糊PID参数自整定仿真程序 包含模糊规则以及pid控制器-Fuzzy self-tuning PID parameter simulation program includes fuzzy rules and pid controller
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遗传算法整定自抗扰控制器参数,用于非线性控制,具有很好的参考作用-Genetic algorithm self-tuning ADRC controller parameters for nonlinear control
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基于离散时间对象的最小方差自校正控制器的仿真(Simulation of minimum variance self-tuning controller based on discrete time object)
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