Optimization of the operating mode of a squirrel-cage induction motor

D. A. Vasiliev, L. A. Panteleeva, E. Gracheva
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Abstract

THE PURPOSE. The presented work aims to optimize the operating mode of an asynchronous motor (AM) with a short-circuited rotor. To implement energy-efficient modes of operation of AM, operating in the resources of a rational electric drive, it is necessary to determine the numerical values of the parameters of the AM equivalent circuit, the currents flowing through the circuit element. There is no significance to this important definition of squirrel-cage currents, in accordance with the identification of the allocation of squirrel-cage rotor currents, which requires a solution along with the determination of the parameters of the IM equivalent circuit.METHODS. To analyze the work of AM in technical and educational formulations, equivalent circuits are presented, which turn into circuits with serial and analytical connections of active and inductive connections. For the established and transient operating modes of AM, it is important to determine the stator and rotor currents, their active and reactive components. In this regard, it is proposed to present the IM equivalent circuit in the form of conductivities connected in parallel, which will allow determining the components of IM currents without complex mathematical models. The replacement circuit of AM consisting of a series and parallel connection of active and inductive resistances has been converted into a circuit consisting of conductances. When converting the AM equivalent circuit, no additional dependencies and coefficients were introduced, and all assumptions that are accepted for IM equivalent circuits refer to the circuit under consideration. RESULTS. It was decided to use the equivalent circuit of one phase of AM, expressed in terms of the conductivities of the stator and rotor. According to the found dependences of conductivities, for the proposed equivalent circuit, the corresponding currents and powers of the AM phase are determined. Formulate the basic principle of optimal frequency control of AM, according to the criterion of energy saving. As an indicator of the efficiency of AM operation in steady-state operating modes, the minimum value of the total losses of the engine, the value of which is determined by the ratio of the product of the active conductivity of the rotor circuit q2s and the active conductivity of the phase q to the square of total conductivity y.CONCLUSION. Based on the results of the analysis of the characteristics of an asynchronous motor, the following conclusion was drawn: the motor will operate with minimal losses if the amplitude of the supply voltage is changed so that the slip of the asynchronous motor is equal to the critical value sξ for a given frequency. For the investigated engine AIR100S4, the critical value is sξ=0.0613 at a network frequency of 50 Hz. The method proposed in the work allows to reduce the loss of active power by 3-5% in the motor windings.
鼠笼式异步电动机运行方式的优化
的目的。本文的工作旨在优化转子短路异步电动机的运行模式。要实现节能型调幅的运行方式,在合理的电驱动资源下运行,就需要确定调幅等效电路的参数数值,即流经电路元件的电流。鼠笼电流的这一重要定义没有意义,根据鼠笼转子电流分配的确定,需要在确定等效电路参数的同时进行求解。为了分析AM在技术和教育公式中的工作,提出了等效电路,将其转换为具有有源连接和电感连接的串行和分析连接的电路。对于已建立的和暂态的AM工作模式,确定定子和转子电流及其有功和无功分量是很重要的。在这方面,建议以并联电导率的形式呈现IM等效电路,这将允许确定IM电流的成分,而不需要复杂的数学模型。由有源电阻和电感电阻串联和并联组成的AM替换电路被转换成由电导组成的电路。在转换调幅等效电路时,没有引入额外的依赖关系和系数,并且所有被接受的调幅等效电路的假设都是指正在考虑的电路。结果。决定使用AM的一相等效电路,用定子和转子的电导率表示。根据所发现的电导率的依赖关系,确定了所提出的等效电路相应的调幅相电流和功率。根据节能标准,制定了调幅调频最优控制的基本原理。作为稳态工况下AM运行效率的指标,发动机总损耗的最小值由转子回路的有源电导率q2s与相的有源电导率q的乘积与总电导率的平方之比决定。根据对异步电动机特性的分析结果,得出以下结论:如果改变电源电压的幅值,使异步电动机的转差等于给定频率的临界值sξ,则电动机将以最小的损耗运行。对于所研究的AIR100S4发动机,在网络频率为50 Hz时,临界值为sξ=0.0613。工作中提出的方法允许将电机绕组的有功功率损耗降低3-5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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