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A Fault-Tolerant Two-Motor Drive With FCS-MP-Based Flux and Torque Control

机译:具有基于FCS-MP的磁通和转矩控制的容错两电机驱动器

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摘要

Independently controlled multimotor drives are typically realized by using a common dc link and independent sets of three-phase inverters and motors. In the case of an open-circuit fault in an inverter leg, one motor becomes single phase. To enable continued controllable operation by eliminating single phasing, the supply for the motor phase with the faulted inverter leg can be paralleled to a healthy leg of another inverter using hardware reconfiguration. Hence, the two motors are now supplied from a five-leg inverter, which has inherent voltage and current limitations. Theoretically, violating the voltage limit leads to inverter overmodulation and large torque oscillations. It is shown here that the finite-control-set model predictive control, designed to control the machines' stator flux and torque, can consider the inherent voltage limit dynamically in the control loop. Apart from preserving the independent control of the two machines, the additional constraint consideration significantly widens the operating speed ranges of the machines. In particular, it is shown that, whenever the voltage limit is entered, the controller reduces the stator flux level automatically, without requiring external flux reference change. The obtained performance is illustrated using experimental results and is also compared to the conventional two-motor field-oriented control scheme. The control concept is thus fully experimentally verified.
机译:独立控制的多电机驱动器通常通过使用公共直流母线以及独立的三相逆变器和电机组来实现。如果逆变器桥臂出现开路故障,则一台电动机将变为单相。为了通过消除单相来实现持续的可控操作,可以使用硬件重新配置,将有故障的逆变器桥臂提供给电动机相的电源与另一台逆变器的正常桥臂并联使用。因此,这两个电动机现在由一个五脚逆变器供电,该逆变器具有固有的电压和电流限制。从理论上讲,违反电压限制会导致逆变器过调制和大转矩振荡。此处显示,旨在控制电机定子磁链和转矩的有限控制集模型预测控制可以动态考虑控制回路中的固有电压极限。除了保留对两台机器的独立控制之外,其他约束条件的考虑也大大拓宽了机器的运行速度范围。特别是显示,无论何时输入电压极限,控制器都会自动降低定子磁通水平,而无需改变外部磁通参考值。使用实验结果说明了获得的性能,并将其与常规的两电机磁场定向控制方案进行了比较。因此,该控制概念已通过实验全面验证。

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