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High response excitation control of superconducting generator for stability of superconducting field winding

机译:超导发电机的高响应励磁控制,提高了超导励磁绕组的稳定性

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Superconducting generators (SCGs) can improve power system stability in steady state and also in transient state with a high response excitation. The authors designed and made an experimental 100 kVA SCG with high response excitation and carried out several experiments for power system stability using an artificial transmission line. In this paper, a high response excitation control of SCG considering stability of the superconducting field winding is discussed and tested. A proposed control system has limiter (over excitation limiter) functions for not only the field current but also for its differential value (voltage). These factors affect a design of the field windings. Transient stability tests were performed by using the test generator and the artificial transmission lines with and without the proposed excitation control. The effects of the proposed control on the transient stability were studied.
机译:超导发电机(SCG)可以提高电力系统在稳态和瞬态时的稳定性,并具有高响应激励。作者设计并制作了具有高响应激励的实验性100 kVA SCG,并使用人工传输线进行了几次有关电力系统稳定性的实验。本文讨论并测试了考虑超导励磁绕组稳定性的SCG的高响应励磁控制。所提出的控制系统具有不仅用于励磁电流而且用于其差分值(电压)的限制器(励磁限制器)功能。这些因素影响励磁绕组的设计。瞬态稳定性测试通过使用测试发生器和带有或不带有建议的励磁控制的人工传输线进行。研究了所提出的控制对瞬态稳定性的影响。

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