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Effects of momentary voltage dips on the operation of induction and synchronous motors

机译:瞬时电压倾斜对诱导和同步电动机操作的影响

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The author presents simplified stability calculations of induction and synchronous motors to voltage dips. The voltage dip withstand capabilities of induction and synchronous motors of the same horsepower, driving similar inertia loads, are calculated. The motor characteristics influencing stability are type of motor selected (synchronous or induction); the pull-out torque of synchronous motors and breakdown torque of induction motors; a constant excitation controller or an excitation boost on voltage dips for the synchronous motors; and load and motor inertia and load characteristics. Synchronous motors are not suitable for fast autoclosing or bus transfer, though these can be auto-resynchronized. Transient torque and current surges must be considered when induction motors are connected for fast bus transfer. It is noted that due to varying power system, motor and load characteristics and much interaction between these, an analysis of avoiding a shut-down on voltage dips has to be performed on a case-by-case basis.
机译:作者介绍了对电压倾斜的诱导和同步电机的简化稳定性计算。计算驾驶和同步电动机的电压DIP耐压能力,同一马力,驱动类似的惯性载荷。影响稳定性的电动机特性是选择的电机类型(同步或感应);同步电动机的拉出扭矩和感应电动机的击穿扭矩;恒定的励磁控制器或同步电动机电压倾斜的激发升压;和负载和电动机惯性和负载特性。同步电机不适合快速自动卷积或总线传输,但这些可以是自动重新同步的。当电动电机连接以进行快速总线转移时,必须考虑瞬态扭矩和电流浪涌。值得注意的是,由于电力系统,电动机和负载特性以及它们之间的多相互作用,必须在逐壳的基础上进行避免关闭电压下降的分析。

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