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Research on motor control and simulation based on PID and Internet of Things system

机译:基于PID和物联网系统的电机控制与仿真研究

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A motor application consists of a Single Phase Induction Motor, and it has single-phase winding, which is winding on the stator of the motor and a winding placed on the rotor. A pulsating magnetic field is produced when a phase supply energizes the single-phase induction motor's stator winding shown below. In the existing method, DTC (Direct Torque Control) is based on converting alternating source and fed to the desired source motor low efficiency and high speed. So in this proposed method, Induction Motor Using Proportional-Integral Derivative (PID) and IOT (Internet of Thing) for Inverter based achieving an efficiency output voltage or with the lowest amount of ripple content, the high switching frequency. Proportional Integral Derivative (PID) is an emerging technique for controlling PWM (Pulse Width Modulation) Inverter-Fed Induction Motor (IM) drives. The precise and quick inspection of the IM (Induction Motor) flux and torque without calling for complex control algorithms. In principle, moreover, it requires only the knowledge of the stator resistance. The application reviews an IM (Induction Motor) essential operation and a PWM (Pulse Width Modulation) inverter using the space vector theory. The IOT (Internet of Thing) control is a monitoring application of a Checking and controlling compliance and boundary is essential in many applications. The reliable functionality Policies available for equivalents and handles Observing different boundaries and three control.
机译:电机应用包括单相感应电动机,它具有单相绕组,其在电动机的定子上缠绕在转子上的绕组。当相位供应激励下面所示的单相感应电动机的定子绕组时,产生脉动磁场。在现有方法中,DTC(直接扭矩控制)基于转换交流源并馈送到所需的源电机低效率和高速。因此,在这种提出的方​​法中,使用比例积分衍生物(PID)和IOT(无事互联网)的感应电动机,用于基于效率输出电压或具有最低纹波内容的最低开关频率。比例积分衍生物(PID)是用于控制PWM(脉冲宽度调制)逆变器馈电感应电动机(IM)驱动器的新出现技术。 IM(感应电动机)通量和扭矩的精确快速检查,而无需呼叫复杂的控制算法。原则上,它只需要对定子阻力的了解。应用介绍了IM(感应电动机)基本操作和使用空间矢量理论的PWM(脉冲宽度调制)逆变器。 IOT(无论互联网)控件是监视应用程序的应用,并且在许多应用中都是必不可少的。可用于观察不同边界和三个控制的等价物和手柄的可靠功能策略。

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