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Power Factor Improvements for Load Commutated Inverters

机译:负载换向逆变器的功率因数改进

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This paper is concerned with the control and operation of load commutated inverter-fed synchronous machines, and in particular with the selection of the firing angles on the machine side of the load commutated inverter. An extension to the previously published Model Predictive Torque Control was developed, which improves the operation of load commutated inverters at steady state. The main benefits of applying this control method are an improved power factor and reduced reactive power consumption, with a simultaneous increase of drive efficiency and reduction of the harmonic content of the line side currents and of the air gap torque. Further, the stator and field currents are reduced, reducing the temperatures in the machine and the transformer, which ultimately increases the lifetime of the equipment. Alternatively, the power factor improvements can be utilized for increasing the output power of the synchronous machines. The findings are validated on a reference industrial site comprising three load commutated inverter-fed synchronous machines with a nominal shaft power of 7.5 MW each.
机译:本文涉及负载换向逆变器进料同步机的控制和运行,特别是在负载换向逆变器的机器侧的烧制角度的选择。开发了先前发布的模型预测扭矩控制的扩展,从而提高了稳态负载换向逆变器的操作。应用该控制方法的主要益处是改善的功率因数和降低的无功功耗,同时增加了驱动效率和线侧电流的谐波含量和空气间隙扭矩的谐波含量。此外,减小定子和场电流,减小了机器和变压器中的温度,最终增加了设备的寿命。或者,可以利用功率因数改进来增加同步机的输出功率。该研究结果在参考工业部位验证,包括三个负载换向逆变器供给同步机,其标称轴功率为7.5 mW。

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