Reference Input Signals Formation for Induction Motor Control in Traction Drive

Q3 Energy
O. F. Opeiko
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引用次数: 0

Abstract

The purpose of this work is to build the analytical improved (with resistances estimation) real time computation of the reference inputs for rotor flux and torque in the vector control system of an induction motor of a traction electric drive. The reference inputs must maximize electromagnetic torque in conditions of voltage source instability, particularly in magnetic field weakening mode. The conventional way to control the field weakening mode is to form flux coupling task inversely proportional to the speed or inversely proportional to the square of the speed in second and third zones respectively. Such reference input signals are not able to provide the maximum torque capability over the entire speed range, and the improved torque capability is achieved in different ways. For instance, voltage feedback is useful for the torque capability enhancement in conditions of internal and external perturbations. A wide change in speed with the weakening of the flux reveals the nonlinear properties of an induction electric motor. However, in vector control systems, proportional-integrating (PI) regulators are usually used. Therefore, firstly, linear PI controllers must be robust, and secondly, the reference input signals for flux and torque must guaranty linear, not saturated state of each PI controller. The proposed expressions for calculating reference inputs for induction motor rotor flux and electromagnetic torque as functions of actual rotor speed are the approximate expressions. The estimation of the possible error shows that the error is acceptable. Simulation is performed for the vector control system of an induction motor and taking into account the calculation of the control signal by the microcontroller and the dynamics of the frequency invertor. The simulation of the resulting system validates the effectiveness of the control system using the proposed expressions for the formation of real-time reference input signals for setting the flux and torque.
牵引传动中感应电机控制参考输入信号的形成
本文的目的是建立牵引电力驱动感应电动机矢量控制系统中转子磁链和转矩参考输入的解析改进(含电阻估计)实时计算方法。参考输入必须在电压源不稳定的情况下,特别是在磁场减弱模式下,使电磁转矩最大化。控制磁场减弱模式的常规方法是分别在第二区和第三区形成与速度成反比或与速度平方成反比的磁通耦合任务。这些参考输入信号无法在整个转速范围内提供最大扭矩能力,并且可以通过不同的方式实现改进的扭矩能力。例如,电压反馈在内外扰动条件下都有助于提高转矩能力。转速随磁链的减弱而大幅度变化,表明了感应电动机的非线性特性。然而,在矢量控制系统中,通常使用比例积分(PI)调节器。因此,首先,线性PI控制器必须具有鲁棒性,其次,磁链和转矩的参考输入信号必须保证每个PI控制器的线性状态,而不是饱和状态。提出的感应电机转子磁链和电磁转矩参考输入随实际转子转速的近似表达式。对可能误差的估计表明,误差是可以接受的。对异步电动机矢量控制系统进行了仿真,考虑了单片机对控制信号的计算和变频器的动态特性。仿真结果验证了控制系统的有效性,该控制系统使用所提出的表达式来形成用于设置磁链和转矩的实时参考输入信号。
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来源期刊
CiteScore
1.60
自引率
0.00%
发文量
32
审稿时长
8 weeks
期刊介绍: The most important objectives of the journal are the generalization of scientific and practical achievements in the field of power engineering, increase scientific and practical skills as researchers and industry representatives. Scientific concept publications include the publication of a modern national and international research and achievements in areas such as general energetic, electricity, thermal energy, construction, environmental issues energy, energy economy, etc. The journal publishes the results of basic research and the advanced achievements of practices aimed at improving the efficiency of the functioning of the energy sector, reduction of losses in electricity and heat networks, improving the reliability of electrical protection systems, the stability of the energetic complex, literature reviews on a wide range of energy issues.
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