Method of calculation of electromagnetic torque and energy losses of three-phase induction motors when powered by a regulated single-phase voltage

Y. Shurub, V. Vasilenkov, Yu. L. Tsitsyurskiy
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Abstract

Introduction. Single-phase power supply of induction motors is used in public utilities, in microclimate control systems for remote agricultural consumers, in water supply and pipeline transport systems, etc. In practice, there is the use of induction motors with three-phase stator winding in the conditions of single-phase power supply. Starting and operating capacitors are used to enable their operation when powered by a single-phase network. Problem. There are many fairly accurate methods for calculating the characteristics of an induction motor in asymmetric, including single-phase, modes of operation, but they are based on differential equations, which does not allow to obtain analytical expressions for preliminary analysis and synthesis of such systems. Goal. The purpose of this article is to develop the analytical method of definition of electromagnetic torque and energy losses of voltage-regulated three-phase induction motors working according to the scheme of single-phase inclusion with the phase-shifting capacitor. Methodology. The method is based on the theory of symmetric components and analysis of replacement schemes of induction machine in motor and generator modes. Results. The analysis of the obtained data shows that at a constant value of the phase-shifting capacitor capacity induction motor working according to the scheme of single-phase inclusion has a minimum of losses at one value of slip at different values of supply voltage. Therefore, if you keep this slip constant when the load changes, you can achieve a mode of minimizing losses at a constant value of the capacity, optimal for this slip. This shows that the thyristor voltage regulator can be used as an energy-saving element under variable load, while the capacitance of the phase-shifting capacitor can remain constant when changing the load in a wide range provided that this slip is stabilized. Originality. The developed method allows to obtain analytical expressions for comparative analysis of electromagnetic torque and energy losses of three-phase induction motors powered by a single-phase network at different values of the capacity of the phase-shifting capacitor, supply voltage for different variants of schemes for including three-phase induction motors in a single-phase network. Practical value. Based on the developed analytical method, the optimal parameters of phase-shifting capacitors and rational schemes for including three-phase induction motors in a single-phase network can be determined.
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三相感应电动机在调节单相电压下的电磁转矩和能量损耗的计算方法
介绍。异步电动机单相电源用于公用事业、偏远农业用户的微气候控制系统、供水和管道运输系统等。在实践中,有在单相供电条件下使用三相定子绕组的感应电动机。启动和操作电容器用于在单相网络供电时使其运行。问题。有许多相当精确的方法来计算异步电动机在非对称(包括单相)运行模式下的特性,但它们都是基于微分方程的,这就不允许获得用于初步分析和综合这类系统的解析表达式。的目标。本文的目的是建立按单相包合移相电容方案工作的稳压三相异步电动机电磁转矩和能量损失的解析定义方法。方法。该方法基于对称分量理论,分析了感应电机在电机和发电机两种模式下的更换方案。结果。对所得数据的分析表明,在移相电容容量一定的情况下,按单相包合方式工作的异步电动机在不同的电源电压值下,在一个转差值处的损耗最小。因此,如果在负载变化时保持该滑移恒定,则可以实现在容量恒定值下最小化损耗的模式,这对于滑移是最优的。这表明可控硅稳压器可以作为可变负载下的节能元件,而移相电容器的电容可以在大范围改变负载时保持恒定,只要该差稳定。创意。所开发的方法允许获得解析表达式,用于比较分析单相网络供电的三相异步电动机在移相电容器容量和供电电压不同值下的电磁转矩和能量损失,用于将三相异步电动机纳入单相网络的不同方案。实用价值。基于所建立的分析方法,可以确定移相电容器的最优参数和单相网络中三相感应电动机的合理方案。
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