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面向并网逆变器的新型宽带阻抗测量方法与稳定性分析

Stepper Motor Position Control Using PD and MPC Algorithms Embedded in Programmable Logic Controller

作者 Anshul Jaswal · Ma’moun Abu-Ayyad · Yash Lad · Anilchandra Attaluri
期刊 IEEE Access
出版日期 2025年1月
技术分类 储能系统技术
技术标签 储能系统 模型预测控制MPC 工商业光伏
相关度评分 ★★★★ 4.0 / 5.0
关键词 步进电机 比例微分控制 模型预测控制 可编程逻辑控制器 位置控制
语言:

中文摘要

并网逆变器的阻抗特性对系统稳定性具有关键影响,传统阻抗测量方法存在频带受限和注入干扰问题。本文提出一种新型宽带阻抗测量方法,采用多频率并行注入技术,实现1Hz至10kHz频段的快速阻抗辨识。

English Abstract

This research studies the implementation of Proportional-Derivative (PD) and Model Predictive Control (MPC) approaches embedded in an industrial Programmable Logic Controller (PLC) to achieve the precise position control of a stepper motor. The MPC algorithm is widely used in industrial plants, particularly in slower processes, such as press machines and heat treatment. However, their application in faster processes, such as servomotors and robotics, is often require faster optimization algorithms or more powerful processors. In this project, MATLAB Simulink® was used to model the motor and test the controller in advance to reduce the field commissioning time. Once validated, the model was exported to PLC-compatible code for real-time system integration. In addition, this study compares the result of MPC algorithm with traditional control strategies, such as PD. To generate pulses and read the motor encoder signal, the project used special function modules and implemented IEC 61131 programming code in ladder logic, function blocks, and structured text. The integration of Simulink with PLCs proved successful, demonstrating the adaptability and responsiveness of the system under varying conditions. Detailed analyses of motor position and speed further highlight the performance of the system. The PD controller exhibited more effective results in controlling position than the PI and MPC controllers. Implementing MPC on PLCs present challenges such as limited computational power, memory, and programming flexibility. PLCs often lack the processing capacity for real-time optimization and fast sampling rates required for accurate predictions.
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SunView 深度解读

该阻抗测量技术可应用于阳光电源SG系列光伏逆变器的并网稳定性分析。通过在线阻抗监测技术,评估逆变器与电网的交互稳定性,优化控制参数设计,预防谐振和振荡问题,提升弱电网条件下的并网适应性。