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Analyzing The Effect of Motor Loads and Introducing a Method for Selection of Electric Generator Power Rating

机译:分析电动机负载的影响并介绍一种选择发电机额定功率的方法

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Dynamic operating conditions of electric generators are very critical case for smaller and isolated electrical power grids. Induction motors play an effective role in industries. At starting an induction motor, it draws high value of current from the power system supply. This causes a voltage and frequency dips in the electric system, and create problems to the supply generator and its connected loads. As compared to a utility, a stand-alone electric generator is a limited electric power source, from the rotating engine, and supply output power. Therefore, a generator power rating must be enough to start and run its connected motor loads in a convenient way. This paper will analyze the dynamic behavior of a stand-alone generator supplying induction motor, during start-up. In addition, the paper introduces a technique to select the most suitable generator power rating supplying certain electric loads taking in consideration the effect of ambient operating temperature, loads power factor, non-linear loads harmonics, and motor loads combined together. The study ensures safe and reliable operation of the supply generator.
机译:对于较小且隔离的电网,发电机的动态运行条件是非常关键的情况。感应电动机在工业中起着有效的作用。在启动感应电动机时,它会从电源系统电源中汲取高电流值。这会导致电气系统中的电压和频率下降,并给供电发电机及其连接的负载造成问题。与公用事业相比,独立发电机是来自旋转发动机的有限电源,并提供输出功率。因此,发电机的额定功率必须足以以方便的方式启动和运行其连接的电动机负载。本文将分析启动过程中为感应电动机供电的独立发电机的动态行为。此外,本文还介绍了一种技术,该技术考虑了周围工作温度,负载功率因数,非线性负载谐波和电动机负载的综合影响,为某些电气负载选择最合适的发电机额定功率。该研究确保了供电发电机的安全可靠运行。

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