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Improving Thermal Recovery Time for Soft-starter-connected AC Motors with Intermittent Periodic Duty Cycles

机译:具有间歇定期占空比的软启动器连接的AC电机的热恢复时间

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The thermal characteristics of de-energized ac motors are largely different from those of operating ac motors. The conventional thermal protection techniques are not capable of providing reliable thermal protection for ac motors operated with intermittent periodic duty cycles. This paper proposes a non-intrusive stator winding resistance and temperature estimation technique for soft-starter-connected ac motors with intermittent periodic duty cycles. By changing the operation of the solid-state power switches in the soft-starter, a dc signal can be intermittently injected into the ac motor when de-energized, with no output torque induced. The stator winding resistance and temperature can therefore be monitored based on the dc model of ac motors, when the motors are de-energized. Based on the monitoring of the stator winding temperature, the required thermal recovery time can be accurately estimated, which can greatly reduce the required time of each operating cycle and improve the efficiency of the industrial process. The proposed technique is validated through experimental testing on a 7.5-hp induction motor. The error in the stator temperature estimation can be within 5°C. Using the proposed stator temperature estimation technique, for ac motors operated under intermittent periodic duty cycles, the thermal recovery time can be reduced by 45% with the overall efficiency of the motor system increased by 70%, compared to the stator temperature estimation techniques used in conventional thermal relays. The importance of the proposed technique lies in its non-intrusive nature: only voltage and current measurements are needed; the motor's operating condition is not interrupted.
机译:断电AC电动机的热特性主要与操作交流电机的热特性不同。传统的热保护技术不能为具有间歇定期占空比运行的AC电动机提供可靠的热保护。本文提出了一种具有间歇定期占空比的软启动器连接的AC电动机的非侵入式定子绕组电阻和温度估计技术。通过改变软启动器中的固态功率开关的操作,在断电时可以间歇地将DC信号间歇地注入交流电动机进入交流电动机中的输出扭矩。因此,当电动机断电时,可以基于AC电动机的DC模型监测定子绕组电阻和温度。基于定子绕组温度的监测,可以准确地估计所需的热恢复时间,这可以大大减少每个操作循环的所需时间,提高工业过程的效率。通过7.5-HP感应电动机的实验测试验证所提出的技术。定子温度估计中的误差可以在5°C范围内。使用所提出的定子温度估计技术,对于在间歇定期占空比下操作的AC电动机,与所使用的定子温度估计技术相比,热恢复时间可以减少45%,电动机系统的整体效率增加了70%传统的热继电器。所提出的技术的重要性在于其非侵入性性质:仅需要电压和电流测量;电机的运行条件不会中断。

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