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Determination of Stray-Load Losses from Field Current Ripple of a Synchronous Machine by Field Simulation Methods

机译:励磁仿真方法确定同步电机励磁电流纹波的杂散负载损耗

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摘要

An improved three-dimensional circuit-field model of the armature of a synchronous machine with combined windings for dynamic modes of short-circuit, at supplying from a rectifier of different design is proposed. The combination of the electrical circuit, field system and spatial modeling of electromagnetic fields makes it possible allows taking into account of the effect of the design features of synchronous machines, the parameters of their windings, the nonlinearity of the electro-physical properties of materials, the effects of self-induction and mutual induction in dynamic short circuit modes. A research of the influence of the fields current ripple on the electromagnetic parameters and stray-load losses in the combined windings of the armature of a synchronous machine by field simulation method was executed for the most common rectification circuits. It is proved, that the use of single-phase bridge rectifiers violates the symmetry of the resulting voltages in the parallel phases of the armature winding of synchronous machine. For this class of synchronous machine, it is advisable to use a three-phase bridge rectifier as a field system.
机译:提出了一种改进的三维电路,其具有用于动态短路的动态模式的同步机的绕组,从不同设计的整流器供应。电磁场的电路,现场系统和空间建模的组合使得可以考虑到同步机的设计特征的效果,其绕组的参数,材料的电物理性质的非线性,动态短路模式中自诱导和互感的影响。为最常见的整流电路执行了对同步机电枢的电磁参数对电磁参数和杂散负载损失的影响的研究。事实证明,使用单相桥式整流器违反了同步机的电枢绕组的并联阶段的所得电压的对称性。对于这类同步机,建议使用三相桥式整流器作为现场系统。

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