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Improvement of alternator stability by controlled quadrature excitation

机译:通过控制正交激励改善交流发电机的稳定性

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Operation of a synchronous generator at leading power factor has been severely limited in the past because of stability considerations. A regulator, acting on a normal direct-axis field winding, can only extend the range of stability when the generator is loaded, and has no effect under unloaded conditions. An additional winding on the quadrature axis, provided with a suitable control, can, however, ensure stable operation at any leading-power-factor load, within the heating limit of the generator. The most effective control uses a closed loop actuated by a signal derived from the load angle. The theoretical treatment in the paper consists of two parts. First, some general results are deduced from simplified equations, particularly relating to the limitations of a direct-axis regulator and the benefit of using an angle signal with the quadrature regulator. More complete computations are then made to obtain stability-limit curves for many alternative schemes. The work is concerned with the steady-state stability of a l-machine system, in which a generator is connected to an infinite bus through a reactance. Experiments to confirm the theoretical results were carried out on the micromachine equipment at Imperial College. The alternatives studied included simple proportionate regulators and more elaborate schemes using first- and second derivative elements, and the angle signal was taken alternatively from the infinite bus and the generator terminals. Good agreement was obtained with the corresponding computations.
机译:出于稳定性的考虑,过去以严格的功率因数运行同步发电机受到了严重的限制。作用在普通直轴励磁绕组上的调节器只能在发电机带载时扩展稳定性范围,而在空载条件下则无作用。但是,在正交轴上的附加绕组具有适当的控制,则可以确保在发电机的加热极限内,在任何超前功率因数负载下都能稳定运行。最有效的控制使用一个闭环,该闭环由从负载角度得出的信号驱动。本文的理论处理包括两部分。首先,从简化的方程式中可以得出一些一般结果,特别是与直轴调节器的局限性以及与正交调节器一起使用角度信号的好处有关。然后进行更完整的计算以获得许多替代方案的稳定性极限曲线。这项工作与l机系统的稳态稳定性有关,在该系统中,发电机通过电抗连接到无限母线。在帝国理工学院的微机设备上进行了实验以验证理论结果。所研究的替代方案包括简单的比例调节器以及使用一阶和二阶导数元素的更精细的方案,并且角度信号是从无限母线和发电机端子中获取的。通过相应的计算获得了良好的一致性。

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