同步发电机的游离静态系统建模模拟负载变化的影响

Hastuti Azis, Pawenary Pawenary, M. Sitorus
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引用次数: 2

摘要

励磁系统是同步发电机的重要组成部分之一,它的作用是为励磁发电机线圈提供直流电源。在本研究中,利用matlab simulink r2017b软件,在容量为206,1 mva、16,5 kv的同步电机上实现了由变压器和连接的桥式晶闸管组成的静态励磁系统。通过调整给定给发电机的负载,励磁电流的变化可以影响发电机产生的输出电压的大小,从而可以增加或降低感应电压。在满载工况下,即p = 175 mw, q = 100 mvar,研究结果表明,当仿真运行在α 0°时,已知直流电压平均值为496,4 v,励磁电流为1057 a,电压发生器输出已超过其标称电压16,72 kv。在这种情况下,为了保持终端电压,必须通过将晶闸管的射角增加到45°的α角来减小励磁电流,从而使平均直流电压降至479,3 v,励磁电流降至985,9 a。在α 45°角处的发电机输出电压按其标称值1,得到。5 kv。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulasi Pemodelan Sistem Eksitasi Statis pada Generator Sinkron terhadap Perubahan Beban
Excitation system is one of the most important parts of synchronous generators, where the system functions to provide dc power to the field generator coil. Iin this study, a static excitation system consisting of transformers and connected thyristors in bridge configuration has been implemented in synchronous machines that operate as 206,1 mva capacity generators, 16,5 kv using the help of matlab simulink r2017b software. By adjusting the load given to the generator, variations in excitation currents can affect the amount of output voltage generated by the generator so that it can increase and decrease the induced voltage. In full load conditions, namely p = 175 mw, q = 100 mvar, the results of the study show that when the simulation is run at alpha 0 °, it is known that the average value of dc voltage is 496,4 v, excitation current is 1057 a and voltage generator output has increased beyond its nominal voltage of 16,72 kv. in this case, to maintain the terminal voltage, the excitation current must be reduced by increasing the angle of shooting of the thyristor to an alpha angle of 45 °, so that the average dc voltage can be reduced to 479,3 v, as well as the excitation current to 985,9 a. the generator output voltage at the alpha 45 ° angle is obtained according to its nominal value of 1,.5 kv.
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