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Design and FE Analysis of Surface Mounted Permanent Magnet Motor/Generator for High-speed Modular Flywheel Energy Storage Systems

机译:高速模块式飞轮储能系统表面安装永磁电动机/发电机的设计和FE分析

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Storage is an extremely important area of research and has the potential of furthering the integration of renewables in the grid. The concept proposed here is to design a ceramic-based surface-mounted permanent-magnet (PM) motor/generator for the modular flywheel storage units those are distributed to allow local generation to be used for consumption locally, thus avoiding losses on the transmission and distribution grid as much as possible. Use of ceramic magnets is advantageous because of their higher operating temperatures, easy availability at lower cost, and lower iron losses owing to lower operating flux densities. A 2.5 kW, 24,000 rpm, surface-mounted PM Motor suitable for a 10-kWh storage system is designed and then analyzed using the Finite Element Method. The designed motor with the airgap flux density of 0.3 T results in over 98 percent efficiency, negligible rotor losses, and very low torque ripple of 6.25%.
机译:存储是一个极其重要的研究领域,并且有可能进一步进一步在网格中集成可再生能源。这里所提出的概念是设计一种基于陶瓷的表面上安装的永磁体(PM)电动机/发电机,用于模块化飞轮存储单元,分布为允许本地的局部产生用于消耗,从而避免了传输损失和尽可能多的分配网格。使用陶瓷磁铁是有利的,因为它们较高的操作温度,以较低的成本轻松可用,而且由于较低的操作磁通密度而较低的铁损失。设计了2.5千瓦,24,000 rpm,适用于10-kWh存储系统的表面安装的PM电机,然后使用有限元法分析。设计的电动机,气隙磁通密度为0.3 T,效率超过98%,转子损耗可忽略不计,扭矩脉动为6.25%。

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