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储能系统技术 储能系统 ★ 5.0

主动磁悬浮轴承系统的先进解析和经验控制策略

Advanced Analytical and Empirical Control Strategies for Active Magnetic Bearing Systems

作者 Debarghya Dutta · Pabitra Kumar Biswas · Suraj Gupta · Sukanta Debnath · Ameni Boumaiza · Furkan Ahmad
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
相关度评分 ★★★★★ 5.0 / 5.0
关键词 主动磁轴承 控制技术 先进控制策略 数值建模 潜在研究方向
语言:

中文摘要

主动磁悬浮轴承系统非常适合高速应用,展示与清洁环境如可再生能源领域的兼容性,以及极端压力、温度和恶劣环境等挑战性条件。本文深入评估主动磁悬浮轴承控制,这些电磁轴承由电力电子元件供电。强调各种主动磁悬浮轴承控制技术的优缺点。然而由于非线性和固有不稳定性质,控制主动磁悬浮轴承存在困难。工作专注于强调使用傅里叶和经验数据驱动工程方法的先进控制策略,显著扩展主动磁悬浮轴承在各行业的潜在应用。文章还强调研究潜在方向,强调使用麦克斯韦原理的主动磁悬浮轴承数值建模,展示复杂控制方案以理解动态情况。

English Abstract

Active Magnetic Bearings (AMB) systems are well-suited for high-speed applications and demonstrate compatibility with clean environments, such as renewable energy sectors, and challenging conditions like extreme pressures, temperatures, and harsh environments. This paper provides an in-depth assessment of the control of AMB, which are electromagnetic bearings powered by power electronic components. It highlights the advantages and disadvantages of various control techniques for AMB. However, controlling AMB presents difficulties due to their nonlinear and inherently unstable nature. The work focuses on emphasizing advanced control strategies using Fourier and empirical data-driven engineering approaches, which have significantly expanded the potential applications of AMB across various industries. The article also highlights potential directions in research, emphasizes numerical modeling for AMB using Maxwell’s principle, and presents sophisticated control schemes to comprehend dynamic circumstances.
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SunView 深度解读

该磁悬浮轴承控制技术对阳光电源高速电机应用具有前瞻价值。虽然阳光主营电力电子产品,但该无机械接触轴承技术可应用于阳光未来布局的高速飞轮储能系统。该先进控制策略与阳光SiC功率器件和DSP控制技术结合,可开发高效低损耗的磁悬浮储能飞轮,提供快速功率响应能力,应用于电网调频和UPS系统。