带直流励磁器的同步发电机励磁控制器

D. Joksimović, Slavko Veinović, D. Stojić
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引用次数: 0

摘要

本文介绍了带励磁直流励磁器的同步发电机励磁控制结构。控制单元是基于微处理器的器件,其功率级内带有降压变换器。所提出的控制结构提供了一种新颖的解决方案,即采用励磁器自激路径。即,降压变换器直接由直流励磁机定子端子提供,定子端子也用于同步发电机励磁绕组。然而,由于同步发电机的磁场电压在不同的运行模式下变化很大,特别是在瞬态期间,这在控制系统中引入了显著的非线性。通过引入适当的线性化,避免了控制结构中额外的块和循环。与IEEE 421.5标准模型DC4B中采用同步发电机终端电压建立自激路径的方案相比,该方案具有更好的暂态大信号性能,并具有一定的成本效益。给出了极点零抵消励磁控制器参数整定技术。通过一组仿真和实验测试,验证了所提出的控制结构的动态性能。采用全阶发生器和励磁器模型进行了仿真。在一台15MVA同步发电机上进行了实验试验。
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Excitation Controller for a Synchronous Generator with a DC Exciter
In this paper, the excitation controlling structure for a synchronous generator with a field-controlled dc exciter is presented. Control unit represents a microprocessor-based device with buck converter within its power stage. Presented controlling structure offers a novel solution with a exciter self-excitation path. Namely, a buck converter is supplied directly from the dc exciter stator terminals, which are also used for the excitation of the synchronous generator field winding. However, since the field voltage of the synchronous generator varies significantly for the different modes of operation, especially during transients, this introduces significant nonlinearity in the control system. Additional blocks and loops in the control structure are avoided by introducing the appropriate linearization. Presented solution offers better large signal performance of excitation control system during transients, and some cost benefits compared to the more common solution proposed in IEEE 421.5 standard model DC4B, with synchronous generator self-excitation path established via its terminal voltage. Pole-zero cancellation excitation controller parameter tuning technique is, also, presented. Dynamic performance of the presented controlling structure is verified through the set of simulation and experimental tests presented in the paper. The simulations are carried out using the full order generator and exciter models. The experimental tests were carried out on a 15MVA synchronous generator.
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