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Real-Time System with Integrated PID Algorithm Used for DC Motor Control

机译:具有用于直流电机控制的集成PID算法的实时系统

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The present paper aims to approach some high complexity testing methods and models, precisely because of the need to optimize the control systems. Methods and models are developed to deliver performance that tends to ideality, or to the ideality of design specifications for such control systems required by today's industry. The highlighting of the results and the validity of the performances obtained using the above described techniques could be achieved by designing a real-time control system for controlling a DC motor subjected to controlled loads. Due to the control applications coming in an increasing number in the last part of time, the control with as high a precision of such a DC motor is imperative. The consequence of using a PID algorithm controller in a closed-loop feedback system determines both the system's response to the position and speed of the DC motor and their calculation accurately. All this system was developed using Real-Time Hardware-in-the-Loop Systems and mathematically characterized models in Simulink, Matlab (design and simulation tools)along with LabView and LabVIEW's NI RIO Platform.
机译:本文旨在准备好采用一些高复杂性的测试方法和模型,因为需要优化控制系统。制定了方法和模型以提供倾向于理想度的性能,或者对当今行业所需的这种控制系统的设计规范的理想性。通过设计用于控制受控负载的DC电动机的实时控制系统,可以实现使用上述技术获得的结果和使用性能的有效性。由于控制应用在最后一部分的越来越多的数量下,控制具有如此高的这种直流电动机的精度是必要的。在闭环反馈系统中使用PID算法控制器的结果确定系统对直流电机的位置和速度的响应及其精确的计算。所有这些系统都是在LabVIEW和LabVIEW的NI RIO平台上使用实时硬件循环系统和数学特征在数学特征的MATIMATION COMENT SYSTEM和MATLAB(设计和仿真工具)中的数学特征。

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