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Performance Analysis of Self-Excited Reluctance Generating System Using Power Balance

机译:基于功率平衡的自激磁阻发电系统性能分析

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This paper investigates the performance of a self-excited reluctance generating system by using active and reactive power balances. The FEA simulation results are employed to account for both saturation and cross magnetizing effect of d-and q- axis inductances. The procedure to determine the operating point with this method is proposed, and the influence of generator parameters, including stator resistance and inductances, are also investigated. Experiments are carried out at no-load and resistive load conditions separately, verifying the predicted values. In addition, the active and reactive power balance curves are also used to determine whether the generating system works at certain conditions. If there are no crossing points between the two curves, the generator is not able to generate. At last, it is shown that the capacitors and load resistors can be selected based on the power and reactive balances, achieving both high output power and high power factor.
机译:本文通过使用有功和无功功率平衡来研究自激磁阻发电系统的性能。 FEA仿真结果用于说明d轴和q轴电感的饱和和交叉磁化效应。提出了用该方法确定工作点的程序,并研究了发电机参数(包括定子电阻和电感)的影响。分别在空载和电阻性负载条件下进行实验,以验证预测值。此外,有功和无功功率平衡曲线还用于确定发电系统是否在某些条件下工作。如果两条曲线之间没有交叉点,则生成器将无法生成。最后,表明可以根据功率和无功平衡选择电容器和负载电阻,从而实现高输出功率和高功率因数。

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