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Pure-Integration-Based Flux Acquisition With Drift and Residual Error Compensation at a Low Stator Frequency

机译:基于纯积分的通量采集,在低定子频率下具有漂移和残余误差补偿

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摘要

We have developed a pure-integration-based flux acquisition method for ac adjustable-speed drives. Based on the current-measurement-error analysis, a simple resonant-type observer is utilized to eliminate the drift or dc offset that originated in the current acquisition process. All the processes in correcting the problem do not rely on motor parameters and do not interfere with other higher frequency contents such as inverter nonlinearity and motor cogging effects. The proposed technique further contains a residual error compensator to completely correct the initial value error and to eliminate miscellaneous dc offset errors of the integrator. The acquisition accuracy of the flux is significantly improved through pure integration by restraining the error of the flux magnitude and phase angle at a low stator frequency. Since the proposed scheme is based on a two-phase current measurement system, it is suitable for retrofitting ac drives, where two current sensors are commonly used.
机译:我们已经开发了一种基于纯积分的交流调速驱动器磁通量采集方法。基于电流测量误差分析,利用简单的谐振型观测器消除了电流采集过程中产生的漂移或直流偏移。解决问题的所有过程都不依赖于电动机参数,也不干扰其他更高的频率内容,例如逆变器非线性和电动机齿槽效应。所提出的技术还包括残余误差补偿器,以完全校正初始值误差并消除积分器的其他直流偏移误差。通过在低定子频率下限制磁通量和相位角的误差,通过纯积分可以显着提高磁通量的采集精度。由于所提出的方案基于两相电流测量系统,因此适用于改造交流驱动器(通常使用两个电流传感器)的方案。

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