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Investigation of the Self-Starting Process of a Low-Power Asynchronous Motor

机译:低功耗异步电动机自启动过程的研究

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The Purpose is to study the self-starting of asynchronous motors for their auxiliary of power plants and substations, as well as the mutual influence of engines on each other, with short-term voltage dips and again restoring the voltage on the tires that are connected to these motors. The object of research was the current section VIII with a capacity of 0.4 kV of the system for its auxiliary with 9 asynchronous motors of the heat and power plant No. 1 in Dushanbe (Republic of Tajikistan). Simulation modeling was carried out in the ETAP software package (Electrical Transient Analyzer Program, OTI company, USA), using algebraic and simplified differential equations to determine the values of static and dynamic stability indicators for the auxiliary of power plants and substations. The developed method for studying the self-starting of asynchronous motors for the own needs of power plants and substations makes it possible to more accurately determine the values of static stability voltages and dynamic stability time. Based on the results obtained, the boundaries of static and dynamic stability of the auxiliary of power plants and substations are constructed, and the implementation of the optimal self-start conditions is determined, which allows for the smooth operation of responsible mechanisms with asynchronous motors in case of voltage dips. The developed simulation model makes it possible to clarify and determine the success of self-starting an asynchronous motor in the systems of auxiliary of power plants and substations. The developed simulation model makes it possible to clarify and determine the success of self-starting an asynchronous motor in the systems of auxiliary of power plants and substations. The developed method is recommended for more accurate selection of parameters of relay protection and automation, as well as technological protection in systems of auxiliary of power plants and substations with asynchronous motors for more reliable operation of the main and auxiliary technological equipment.
机译:目的是研究用于发电厂和变电站辅助的异步电动机的自动启动,以及彼此的发动机的相互影响,短期电压倾斜,并再次恢复连接的轮胎上的电压到这些电机。研究对象是当前部分VIII,其辅助系统的辅助系统为0.4kV,其中杜尚别(塔吉克斯坦共和国)的热量和发电厂的9个异步电机。仿真建模在ETAP软件包(电气瞬态分析仪程序,OTI公司,USA)中进行,使用代数和简化的微分方程来确定电厂和变电站辅助的静态和动态稳定指示器的值。用于研究异步电动机的自动启动的开发方法,用于自身的发电厂和变电站的需要使得可以更准确地确定静态稳定电压和动态稳定时间的值。基于所获得的结果,构造了发电厂和变电站辅助静态和动态稳定性的边界,确定了最佳自启动条件的实现,这允许具有异步电动机的负责机制的平稳运行电压倾斜的情况。开发的仿真模型使得可以阐明并确定发电厂和变电站系统中自动启动异步电动机的成功。开发的仿真模型使得可以阐明并确定发电厂和变电站系统中自动启动异步电动机的成功。建议开发的方法以便更准确地选择继电器保护和自动化参数,以及电厂和具有异步电动机的变电站系统的技术保护,用于更可靠的主和辅助技术设备的操作。

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