带干扰 Simscape 升压转换器模型的电压控制系统设计与仿真

IF 2.5 3区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS International Journal of Control Automation and Systems Pub Date : 2024-05-09 DOI:10.1007/s12555-023-0311-0
Ibrahim Khalaf Mohammed
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引用次数: 0

摘要

本文介绍了在干扰条件下适用于升压转换器系统的电压控制系统。升压转换器的电压调节性能由反馈 PID 控制器系统控制。通过使用 Simscape 环境对基于 PID 的升压转换器系统进行建模和仿真,验证了所提出的电力系统的现实性。与 Simulink 模型相比,Simscape 系统的实时性更强,因为 Simscape 组件和设备的模型是基于公差和寄生元件等实际考虑因素建立的。利用 PSO 优化算法,根据 PID 增益参数的最佳值运行变流器系统,从而提高 PID 控制器的性能。在 Matlab 工具中实现了拟议电力系统的仿真设计,并对其结果进行了展示和讨论,以评估所提出的反馈 PID 控制器的性能。为了验证变流器性能的鲁棒性,根据电源电压、参考电压和电阻负载工作条件的干扰,对 PID 控制器的电压调整行为进行了评估。仿真结果表明,PID 控制器能够抑制电源电压干扰,并使升压输出有效跟踪需求输入轨迹。
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Design and Simulation of Voltage Control System for Simscape Boost Converter Model With Disturbances

In this paper, a voltage control system for an applicable Boost converter system under disturbances is presented. The voltage adjustment performance of the Boost converter is governed by a feedback PID controller system. The realism of the proposed power system is validated through using the Simscape environment, which is adopted to model and simulate the PID based Boost converter system. The presented Simscape system is more applicable in real-time than the Simulink model as the model of the Simscape components and devices is built based on practical considerations like tolerance and parasitic elements. PSO optimization algorithm is utilized to develop the performance of the PID controller through operating the converter system based on best values for PID gain parameters. The simulation design of the proposed power system is implemented in the Matlab tool and its results are presented and discussed to evaluate the performance of the presented feedback PID controller. To validate the robustness of the converter performance the voltage adjustment behavior of the PID controller is assessed based on disturbance of supply voltage, reference voltage and resistive load working conditions. Simulation results revealed the ability of the PID controller to reject the supply voltage disturbances and enable the Boost output to track the demand input trajectories effectively.

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来源期刊
International Journal of Control Automation and Systems
International Journal of Control Automation and Systems 工程技术-自动化与控制系统
CiteScore
5.80
自引率
21.90%
发文量
343
审稿时长
8.7 months
期刊介绍: International Journal of Control, Automation and Systems is a joint publication of the Institute of Control, Robotics and Systems (ICROS) and the Korean Institute of Electrical Engineers (KIEE). The journal covers three closly-related research areas including control, automation, and systems. The technical areas include Control Theory Control Applications Robotics and Automation Intelligent and Information Systems The Journal addresses research areas focused on control, automation, and systems in electrical, mechanical, aerospace, chemical, and industrial engineering in order to create a strong synergy effect throughout the interdisciplinary research areas.
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