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Evaluation of various benchmark processes with appropriate controller design in LabVIEW platform

机译:LabVIEW平台中适当的控制器设计的各种基准过程的评估

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摘要

Engineering education needs simulation studies and it is the best way of understanding engineering concepts with minimal cost and energy. The main focus of this present work is to provide a workspace especially in LabVIEW for analyzing the performance of the system and to operate them in stable and controlled regions. LabVIEW is a simulation platform which facilitates the simulation of various systems and their response with various controllers programmed using functional blocks that are easy to understand. In thiswork, the benchmark test systems likeDCseries motor as first order system, general second order system and a Real time rotary Inverted Pendulum (RIP) model which has been reduced with high order system reduction technique are considered. The test systems are controlled with PID controller tuned by various tuning methods. The PID controller is tuned with conventional methods like Ziegler-Nichols (ZN), Internal Model Control (IMC), and Direct Synthesis (DS) and the responses of the systems are analysed in LabVIEW platform. The common platform has been developed and tested for supporting the performance and analysis of the system with adjustable PID controller parameters like proportional gain Kp,integral time constant Ti; and derivative time constant Td. The performance specifications are phase margin, gain margin, bandwidth, settling time, rise time and integral errors. This LabVIEW platform facilitates the learners to analyze the system effectively with various controllers and their performance parameters are compared easily.
机译:工程教育需要仿真研究,这是了解工程概念的最佳成本和能量。本工作的主要焦点是提供一个工作空间,特别是在LabVIEW中进行分析,以分析系统的性能并在稳定和控制的区域中操作它们。 LabVIEW是一个仿真平台,它有助于模拟各种系统及其使用易于理解的功能块编程的各种控制器的响应。在这方面,考虑了基准测试系统的基准测试系统作为第一订单系统,一般的二阶系统和已经用高阶系统减少技术减少的实时旋转倒立摆锤(RIP)模型。使用各种调谐方法调谐的PID控制器控制测试系统。 PID控制器用Ziegler-Nichols(Zn),内部模型控制(IMC)等传统方法调整,并在LabVIEW平台中分析了系统的响应。已经开发和测试了共同的平台,用于支持具有可调节PID控制器参数的系统的性能和分析,如比例增益KP,积分时间常数Ti;和衍生时间常数td。性能规范是相位裕度,增益边缘,带宽,建立时间,上升时间和积分错误。此LabVIEW平台促进了学习者通过各种控制器有效地分析系统,并容易比较它们的性能参数。

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