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Saturated induction machine steady-state performance assessment through simulations

机译:通过仿真评估饱和感应电机的稳态性能

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This paper presents results regarding the influence of the magnetic core saturation on the steady state performances of the induction machine (IM). The assessment is done through simulations performed with an IM model developed with the use of state equations and modified nodal equations. When analyzing the induction motor operating at steady state, we've considered a modified version of the well-known Π (Steinmetz) per-phase equivalent circuit. In the modified circuit, the magnetizing inductance is considered as a current-controlled nonlinear inductor, while the rotor resistor as a time-variable resistor. For simulations we used two software packages: ENCAP (Electrical Nonlinear Circuit Analysis, which is based upon modified nodal equations) and SYSEG (Symbolic State Equation Generation, which is based upon state equations). The state equations can be integrated through an existing routine from MATLAB/Simulink package. The features of the above mentioned programs include the Fourier analysis capabilities, with the direct application to calculating the harmonics of every order present in the current and voltage waveforms. Following the computing of harmonic content, we assessed the steady state characteristics (power factor, efficiency, etc) of the induction motor.
机译:本文介绍了有关磁芯饱和度对感应电机(IM)稳态性能的影响的结果。评估是通过使用状态方程和修正的节点方程开发的IM模型进行的仿真完成的。当分析感应电动机在稳态下运行时,我们考虑了著名的Π(Steinmetz)每相等效电路的改进版本。在修改后的电路中,励磁电感被视为电流控制的非线性电感,而转子电阻被视为时变电阻。对于仿真,我们使用了两个软件包:ENCAP(电气非线性电路分析,其基于修改后的节点方程式)和SYSEG(符号状态方程生成,其基于状态方程式)。状态方程可以通过MATLAB / Simulink软件包中的现有例程进行集成。上述程序的功能包括傅立叶分析功能,可直接用于计算电流和电压波形中存在的每个阶次的谐波。在计算谐波含量之后,我们评估了感应电动机的稳态特性(功率因数,效率等)。

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