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Permanent Magnet Synchronous Machine, Concentrated Winding, Dual Winding Electric Machine, Electric accessory drive system, Hybrid Electrical Vehicle Application

机译:永磁同步机,集中绕组,双绕组电机,电动配件驱动系统,混合动力电动汽车应用

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Mechanical gearboxes are typically employed with doubly-fed induction generator based wind turbines to convert the turbine’s low speed mechanical power into high-speed mechanical power to drive the electrical generator. The main drawback of this solution is the gearbox’s reliability and maintenance. Direct-drive wind turbines, on the other hand, employ a large volume and weight permanent magnet generator. An emerging alternative being promoted by the research community is one where a magnetic gearbox is used in conjunction with a doubly-fed induction generator. This alternative maintains the reduced size doubly-fed machine, and aims to overcome the mechanical gearbox problems. This paper introduces a new wind turbine architecture based on a novel three port magnetic gearbox (3PMGB). The proposed magnetic gearbox provides additional power harvesting and system control benefits through its electrical output port. The proposed 3PMGB configuration is derived from the conventional planetary magnetic gearbox where N-phase coils forming a modular winding are fixed around the ferromagnetic pole-pieces of the planetary magnetic. The turbine mechanical power is thus divided into mechanical power to drive the electrical generator, and electrical power that can be used to feed the power required by the rotor circuit. This configuration offers complete isolation between the rotor circuit and the grid. The transformer used to feed the rotor circuit can be then dispensed with. Moreover, this proposed system can be used to improve the ancillary service of the electrical power generated by wind through employing a storage system to the DC-link of the back-to-back converter for power leveling purposes.
机译:机械齿轮箱通常使用基于双馈感应发电机的风力涡轮机,以将涡轮机的低速机械电力转换为高速机械动力以驱动发电机。该解决方案的主要缺点是齿轮箱的可靠性和维护。另一方面,直接驱动风力涡轮机采用大容量和重量永磁发电机。研究界促进的新兴替代方案是磁齿轮箱与双馈感应发生器结合使用的替代方案。该替代方案保持了较大的双馈机器,旨在克服机械齿轮箱问题。本文介绍了一种基于新型三个端口磁齿轮箱(3PMGB)的新型风力涡轮机架构。所提出的磁齿轮箱通过其电输出端口提供额外的功率收集和系统控制优势。所提出的3PMGB配置来自传统的行星磁齿轮箱,其中形成模块化绕组的N相线圈固定在行星磁的铁磁珠片周围。因此,涡轮机械功率被分成机械动力以驱动电发电机,并且可以用于馈送转子电路所需的电力的电力。该配置在转子电路和网格之间提供完全隔离。然后可以分配用于馈送转子电路的变压器。此外,该提出的系统可用于改善风云通过使用存储系统到后背转换器的DC链路而产生的电力的辅助服务以进行功率调平目的。

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