Fuzzy logic controller for closed loop cascaded flyback converter fed PMDC-motor system

Q2 Energy
C. Manikandan, G. Sundarrajan
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引用次数: 3

Abstract

This paper displays a Fly Back Converter idea to straightforwardly incorporate cascaded flyback converter. The flyback-converter finds a way between DC-source and DC Motor-load. This work covenants with the modeling, simulation, and application of a Fuzzy Logic controlled (FLC) - Cascaded Fly back Converter (CFLB) system. This work recommends FLC to control Parallel cascaded fly-back converter to fabricate essential DC voltage from the input supply voltage. The yield of CFLB is controlled utilizing closed loop configuration. Closed loop PI & Fuzzy logic controlled CFLB systems are simulated and their results are related. The outcomes signify that the FLC based system gave a superior response than the P.I. controlled CFLB system. The FLC controlled CFLB system has benefits like decreased steady state error and enhanced time domain-response.
闭环级联反激变换器馈PMDC电机系统的模糊控制器
本文提出了一种直接结合级联反激变换器的反激变换器思想。反激变换器在直流电源和直流电机负载之间找到了一条途径。本工作涉及模糊逻辑控制(FLC) -级联飞回转换器(CFLB)系统的建模、仿真和应用。本研究建议采用FLC控制并联级联反激变换器,从输入电源电压制造必要的直流电压。采用闭环结构控制cfb的产率。对闭环PI和模糊逻辑控制的cfb系统进行了仿真,并给出了仿真结果。结果表明,基于FLC的系统比pi控制的CFLB系统具有更好的响应。FLC控制的cfb系统具有减小稳态误差和增强时域响应的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Power Electronics and Drive Systems
International Journal of Power Electronics and Drive Systems Energy-Energy Engineering and Power Technology
CiteScore
3.50
自引率
0.00%
发文量
0
期刊介绍: International Journal of Power Electronics and Drive Systems (IJPEDS) is the official publication of the Institute of Advanced Engineering and Science (IAES). The journal is open to submission from scholars and experts in the wide areas of power electronics and electrical drive systems from the global world. The scope of the journal includes all issues in the field of Power Electronics and drive systems. Included are techniques for advanced power semiconductor devices, control in power electronics, low and high power converters (inverters, converters, controlled and uncontrolled rectifiers), Control algorithms and techniques applied to power electronics, electromagnetic and thermal performance of electronic power converters and inverters, power quality and utility applications, renewable energy, electric machines, modelling, simulation, analysis, design and implementations of the application of power circuit components (power semiconductors, inductors, high frequency transformers, capacitors), EMI/EMC considerations, power devices and components, sensors, integration and packaging, applications in motor drives, wind energy systems, solar, battery chargers, UPS and hybrid systems and other applications.
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