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Identification and Compensation of Inverter Dead-Time Effect on Zero Speed Sensorless Control of AC Machines Based on Voltage Pulse Injection

机译:基于电压脉冲喷射的AC机零速度无传感器控制的逆变器死区效应的识别与补偿

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In this paper the influence of the non-ideal behavior of power electronics, sensors, and signal processing on pulse signal injection based speed sensorless control is addressed and investigated. The speed sensorless control signals are obtained from the transient current response resulting from an excitation of the machine with voltage pulses. The investigation is focused on sensorless control of induction machines however, the results are applicable also for other types of ac machines. By using pulse width modulation in combination with voltage source inverters the inverter interlock dead-time is essential necessary to prevent the short circuit of the dc link. A new approach to identify the interlook dead-time by utilizing the transient voltage pulses and the current response is presented. The disturbing influences and effects of the inverter interlock dead-time on the resulting signal include the deviation of the operating point during the pulse injection, as well as additional resulting harmonics in the control signal. For the specific problem of compensating these effects on the signal injection measurement a new approach is applied in this paper. After identifying the effective dead time the switching commands are adapted in order to clearly reduce the disturbing effects. Further simulation results and additionally measurement results are presented to show the influence on the resulting control signals.
机译:本文在寻址和研究了电力电子,传感器和信号处理对脉冲信号喷射的无传感器控制的影响。速度传感器控制信号是由机器的激励而产生的电压脉冲产生的瞬态电流响应。该调查专注于感应机器控制,然而,结果也适用于其他类型的AC机器。通过使用脉冲宽度调制与电压源反相器组合使用逆变器互锁的死区时间是必要的,以防止直流链路的短路。提出了一种通过利用瞬态电压脉冲和电流响应来识别interlook死区时间的新方法。逆变器互锁死区时间对所得信号的干扰影响和效果包括在脉冲喷射期间的操作点的偏差,以及控制信号中的附加结果谐波。对于补偿这些影响对信号注入测量的具体问题,本文应用了一种新方法。在识别有效死区时间之后,调整切换命令以清楚地降低干扰效果。进一步的仿真结果和另外的测量结果显示出对所得控制信号的影响。

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