AC currents are automatically calibrated by two different thermal current converter(TCC)designs.The two designs are different in the used number of the thermal-elements(TEs).Consequently they differ in their output el...AC currents are automatically calibrated by two different thermal current converter(TCC)designs.The two designs are different in the used number of the thermal-elements(TEs).Consequently they differ in their output electro motive force(EMF).Studying the effect of changing the output EMF is done in this paper through calibrating AC currents.5 mA and 5 A are accurately calibrated at different frequencies 55 Hz,1 kHz and10 kHz by the two TCCs.A comparison is made between the results to evaluate the effect of the output EMF value on the accuracy and the uncertainty of the low and higher AC current calibration.A LabVIEW program is designed for this accurate automatic calibration to overcome the problems of the manual calibration on the thermal converters.展开更多
针对大功率电动机在直接启动过程中启动电流过从而对电网产生较大的冲击的问题,设计一种基于温度补偿控制的水电阻调速器的大功率转子绕线异步电机软启动及调速系统。介绍水电阻器的结构以及原理,采用A R P S经验公式分析温度变化对电...针对大功率电动机在直接启动过程中启动电流过从而对电网产生较大的冲击的问题,设计一种基于温度补偿控制的水电阻调速器的大功率转子绕线异步电机软启动及调速系统。介绍水电阻器的结构以及原理,采用A R P S经验公式分析温度变化对电解质溶液的电阻率影响,建立基于水电阻调速的异步电动机调速系统动力学数学模型,提出了温度补偿的控制方法,通过M a t l a b/S i m u l i n k仿真验证模型及算法的有效性。仿真结果表明:采用温度补偿的水电阻器调速系统启动电流较小,启动转矩平滑,调节速度快。展开更多
文摘AC currents are automatically calibrated by two different thermal current converter(TCC)designs.The two designs are different in the used number of the thermal-elements(TEs).Consequently they differ in their output electro motive force(EMF).Studying the effect of changing the output EMF is done in this paper through calibrating AC currents.5 mA and 5 A are accurately calibrated at different frequencies 55 Hz,1 kHz and10 kHz by the two TCCs.A comparison is made between the results to evaluate the effect of the output EMF value on the accuracy and the uncertainty of the low and higher AC current calibration.A LabVIEW program is designed for this accurate automatic calibration to overcome the problems of the manual calibration on the thermal converters.
文摘针对大功率电动机在直接启动过程中启动电流过从而对电网产生较大的冲击的问题,设计一种基于温度补偿控制的水电阻调速器的大功率转子绕线异步电机软启动及调速系统。介绍水电阻器的结构以及原理,采用A R P S经验公式分析温度变化对电解质溶液的电阻率影响,建立基于水电阻调速的异步电动机调速系统动力学数学模型,提出了温度补偿的控制方法,通过M a t l a b/S i m u l i n k仿真验证模型及算法的有效性。仿真结果表明:采用温度补偿的水电阻器调速系统启动电流较小,启动转矩平滑,调节速度快。