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Development of high bandwidth current sensors based on the magnetoresistive effect

机译:基于磁阻效应的高带宽电流传感器的开发

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New control techniques for electric drives pose new problems for the manufacturers of current sensors. In particular the sensorless control of permanent magnet synchronous machines places new demands on the current sensors used to measure the motor phase currents. The latest control techniques to determine the rotor position from the inductive signature of the electric machine require best performance characteristics for phase current sensing in terms of dynamic range and bandwidth. Oversampling of the motor current allows a low noise calculation of the rate of change of current (di/dt), which improves the measurement resolution and allows smooth operation down to zero speed without negative side-effects, such as acoustic noise. The magnetoresistive (MR) effect offers a unique combination of high bandwidth, high resolution, miniaturization and robustness, and is particularly well-suited for the development of compact, fast and accurate current sensors. The power losses are significantly lower than for shunt resistors and the response time is almost an order of magnitude faster than for hall-effect based current sensors. Furthermore, MR-based current sensors have an extremely high bandwidth, in the range of several MHz, which allows the full exploitation of new wide bandgap power electronic technologies, such as Silicon Carbide switches and diodes.
机译:电力驱动器的新控制技术对当前传感器制造商的新问题。特别地,永磁同步机的无传感器控制在用于测量电机相电流的电流传感器上给出了新的要求。从电机的电感签名确定转子位置的最新控制技术需要在动态范围和带宽方面的相电流感测的最佳性能特性。电动机电流的过采样允许电流(DI / DT)的变化率的低噪声计算,从而提高测量分辨率,并允许平滑地操作,无需负副作用,例如声噪声。磁阻(MR)效应提供了高带宽,高分辨率,小型化和稳健性的独特组合,特别适用于紧凑,快速准确的电流传感器的开发。功率损耗显着低于分流电阻,响应时间几乎比基于霍尔效应的电流传感器更快的速度。此外,基于MR-电流传感器具有非常高的带宽,在几MHz,这允许充分开发新的宽带隙电力电子技术,如碳化硅开关和二极管的的范围内。

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