燃气轮机发电中高速电机的研究进展

M. Xiaohe, Su Rong, T. K. Jet, W. Shuai, Zhang Xiaolong, Viswanathan Vaiyapuri, G. Chandana, G. Amit, N. Sivakumar
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引用次数: 16

摘要

更电动飞机(MEA)的概念要求高度优化的机身动力系统,这是通过用节能的电气系统取代气动和液压系统来实现的。随着电力需求的增加,更多的电力发动机(MEE)将在未来的MEA中发挥关键作用,其中更多的电力将使用传统的齿轮驱动电机从燃气轮机轴中提取,这是众所周知的低效率和可靠性问题。将电机直接嵌入发动机轴将有助于消除对附件变速箱的需求,并有可能提高整个系统的可靠性和效率。然而,嵌入电机提出了重大的设计挑战,以满足关键要求。其中包括:电机在高温和高振动环境下运行的必要性,空间限制等机械约束,以及高速运行的需要。其他要求包括电机的高功率密度、高扭矩密度、高效率和免维护运行。目前,针对许多具有挑战性的工业和汽车应用,已经开发了不同的电机拓扑,其中一些要求和标准已经部分满足。本文对各种电机拓扑进行了详细的调查和贸易研究,以了解它们的优点、限制和缺点,从而对它们的适用性进行初步评估,以满足航空航天应用中嵌入式机器的严格要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review of high speed electrical machines in gas turbine electrical power generation
The concept of a More Electric Aircraft (MEA) demands a highly optimized airframe power system which is achieved by replacing pneumatic and hydraulic systems with energy efficient electrical systems. With increasing power offtake requirements, the More Electric Engine (MEE) could play a key role in future MEA, where more electrical power will be drawn from gas turbine shaft using the conventional gear driven electrical machine, which is known to present inefficiencies and reliability issues. Embedding an electrical machine directly at the engine shaft would help eliminate the need for the accessory gearbox along with potentially improving the reliability and efficiency of the whole system. However embedding the electrical machine presents significant design challenges to meet the key requirements. Some of these include: the necessity of the electrical machine to operate in high temperatures and high vibration environments, the mechanical constraints such as space limitations, and the need to operate at high speeds. Other requirements include the need for high power density, high torque density, high efficiency and maintenance-free operation of the electrical machines. At present, different electrical machine topologies have been developed for a number of challenging industrial and automotive applications where some of the requirements and criteria have been partially met. In this paper the detailed investigation and the trade study carried out of the various electrical machine topologies to understand their advantages, constraints and drawbacks is presented to provide a preliminary evaluation of their suitability for meeting the stringent requirements of embedded machines in aerospace applications.
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