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Speed control simulation of DC servomotor using hybrid PID-fuzzy with ITAE polynomials initialization

机译:混合PID模糊结合ITAE多项式初始化的直流伺服电动机速度控制仿真。

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DC motor is widely used in industrial process, which includes automation and robotics process. DC motor has many advantages than AC motor, such as: it has wide range controllable speed without influences its quality input of power, it has high output torque, simpler construction than AC motor, it does not result lossless of reactive power, and it does not yield harmonic to the supplying system. In order to produce optimal operation, the speed of DC motor must be controlled. The speed can be controlled using some methods, such as: conventional PID, Ziegler Nichols based PID controller, Transient Response Specification based PID controller, and Hybrid PID-Fuzzy. The aim of this research is to analyze the speed control of DC Motor using Hybrid PID-Fuzzy method and compares its output performance with conventional PID method. The output performance among these method will be compared using calculation of their ITAE polynomials output. Modeling and simulation have been done in MATLAB-Simulink and it shows the better performance compared with classical PID method.
机译:直流电动机广泛用于工业过程,包括自动化和机器人过程。直流电动机比交流电动机具有许多优势,例如:转速范围可控制,而不会影响其电能质量输入;与交流电动机相比,它具有较高的输出转矩,更简单的结构;不会产生无功功率损失,并且不会向供电系统产生谐波。为了产生最佳运行,必须控制直流电动机的速度。可以使用某些方法来控制速度,例如:常规PID,基于Ziegler Nichols的PID控制器,基于瞬态响应规范的PID控制器以及混合PID-Fuzzy。这项研究的目的是分析使用混合PID-模糊方法的直流电动机的速度控制,并将其输出性能与常规PID方法进行比较。这些方法之间的输出性能将通过计算其ITAE多项式输出进行比较。在MATLAB-Simulink中进行了建模和仿真,与传统的PID方法相比,它具有更好的性能。

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