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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Fuzzy control of a dc motor driven four-bar mechanism
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Fuzzy control of a dc motor driven four-bar mechanism

机译:直流电动机驱动的四连杆机构的模糊控制

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Despite the basic assumption that the angular velocity of the crank is constant in much mechanism analysis, this may not be validated when the mechanism is connected to an electric motor. In this paper, a complete state-space mathematical model for a motor-mechanism system is first developed and numerically simulated to demonstrate the crank angular speed fluctuations for the case of a constant voltage supply. Then, a fuzzy logic controller is designed to regulate the crank angular speed of the mechanism and compared to an optimal PID controller. The inputs to the fuzzy controller are the error and change of error in the crank speed and the output is the applied voltage. The results obtained from the fuzzy controller are not only superior in the rise time, speed fluctuations, and percent overshoot but also much better in the controller output signal structure, which is much remarkable in terms of the hardware implementation.
机译:尽管在许多机构分析中基本假设曲柄的角速度是恒定的,但是当机构连接到电动机时,这可能无法得到验证。在本文中,首先开发了一个完整的电机系统状态空间数学模型,并进行了数值模拟,以证明在恒压电源情况下曲柄角速度波动。然后,设计了模糊逻辑控制器来调节机构的曲柄角速度,并将其与最佳PID控制器进行比较。模糊控制器的输入是曲柄速度的误差和误差的变化,输出是施加的电压。从模糊控制器获得的结果不仅在上升时间,速度波动和超调百分比方面更出色,而且在控制器输出信号结构上也要好得多,就硬件实现而言,这是非常出色的。

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