飞轮储能用磁悬浮系统的优化设计

M. Andriollo, E. Scaldaferro, A. Tortella
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引用次数: 1

摘要

飞轮储能由于其高可靠性、相对不受环境影响和长寿命,是最适合电力密集型应用的解决方案之一。另一方面,高速系统所需的磁轴承电源可能导致孤岛运行时空载数小时内完全自放电。提出了一种钢转子飞轮混合悬架系统的优化设计,该系统由永磁体和励磁线圈组成,仅在相对于垂直稳态位置存在位移时激活。采用非线性电磁模型模拟了磁体的动态特性,考虑了不同参数(如温度对磁体性能的影响)的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design optimization of the magnetic suspension for a flywheel energy storage application
Flywheel energy storage is one of the most suitable solutions for power-intensive applications due to its high reliability, relative immunity to environment aspects and long lifespan. On the other side, power supply of magnetic bearings, required for high-speed systems, may lead to the complete self-discharge at no-load in islanded operation within hours. The paper presents an optimized design of a hybrid suspension system for steel rotor flywheels combining permanent magnets and excitation coils, activated only in presence of displacements with respect to vertical steady-state position. Dynamic behavior is simulated by the adoption of a non-linear electromagnetic model including the influence of different parameters (for instance, temperature on magnet properties).
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