超高XD/XQ比混合同步电机的动态性能

L. U. Anih, E. O. Agbachi, E. Obe
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引用次数: 0

摘要

提出了一种具有超高XD/XQ比的混合同步电机。传统的同步电机有两部分输出功率;励磁和磁阻分量。与励磁分量相比,取决于显着比(XD/XQ)的磁阻功率可以忽略不计。从理论上讲,可变XD/XQ比的混合电机具有将功率的磁阻分量提高到无穷大的能力。混合电机的定子框架由两个相同的圆柱形磁芯(A, B)堆叠而成,它们是磁隔离的。混合转子;采用凸形和圆柱形。定子铁芯堆上有两个绕组,分别可识别为主绕组和控制绕组,它们是电隔离的,但磁耦合的。主绕组串联在两个堆栈(A和B)上,端子连接到电机运行的公用电源,而对于发电机,端子馈送负载母线。控制绕组在从一个堆栈传递到另一个堆栈时调换,并在平衡可调电容器组上终止。从理论上讲,通过改变平衡可调电容器组,混合电机的交轴电抗(XQ)可以从零到无穷大(0<=XQ<=inf)进行调节。机器输出功率的磁阻分量取决于电抗比(XD/XQ),理论上也可以看到增加到无穷大。当800uf的电容连接到控制绕组时,磁阻功率为励磁功率的两倍。根据容抗的大小,磁阻功率甚至可以达到励磁功率的十倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Performance of a Hybrid Synchronous Machine with Ultra-High XD/XQ Ratio
This paper presents a hybrid synchronous machine with ultra-high XD/XQ ratio. A conventional synchronous machine has two components of output power; the excitation and the reluctance component. The reluctance power which depends on the saliency ratio (XD/XQ ) is negligible when compared with the excitation component. A hybrid machine with variable XD/XQ ratio has the capability of raising the reluctance component of the power to infinity theoretically. The stator frame of the hybrid machine is stacked with two identical cylindrical cores (A, B) that are magnetically isolated. A hybridised rotor; salient cum cylindrical is used. There are two windings on the stator core stacks identifiable as the main and control windings respectively which are electrically isolated but magnetically coupled. The main windings are connected in series across the two stacks (A and B) and the terminals connected to the utility supply for motor operation while for generator, the terminals feed the load busbar. The control windings are transposed in passing from one stack to the other and terminated across a balanced adjustable capacitor bank. It is shown that the quadrature axis reactance (XQ) of the hybrid machine can be adjusted from zero to infinity (0<=XQ<=inf.) theoretically by varying the balanced adjustable capacitor bank. The reluctance component of the output power of the machine which depends on the reactance ratio (XD/XQ ) is also seen to theoretically increase to infinity. The reluctance power is shown to be twice the excitation power when the capacitor of 800uf is connected to the control winding. Depending on the value of the capacitive reactance, the reluctance power can be made even ten times the excitation power.
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