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Drive DC Bus Voltage Control during Power Interruptions using Kinetic Energy Recovery

机译:使用动能恢复在电源中断期间驱动直流母线电压控制

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Voltage dips and sags of short duration constitute a serious problem for electrical drives (frequency converters) as many are equipped with an under-voltage protection causing the system to trip within a few milliseconds after an input voltage sag. This tripping mechanism can be associated with a total loss of system control since the control electronics are usually powered by the DC-link capacitor, requiring a full restart. The proposed solution to this problem is to recover some of the mechanical energy stored in the rotating masses by kinetic buffering. During the interruption interval, the drive system continues to operate at almost zero electromagnetic torque, just regenerating a minor amount of power to cover the electrical losses in the inverter. The still controlled braking of the drive depends on the available load torque. Thus, the implemented regenerative braking scheme allows the inverter to keep its DC bus voltage at a pre-determined minimum level, expanding the time during which the supply voltage can be reapplicd without the time-consuming DC-link capacitor recharging cycle. Considering realistic conditions, advantages and drawbacks of different control approaches are discussed. Measured results are presented and evaluated to demonstrate the performance and the stability of the system.
机译:短持续时间的电压下降构成电驱动器(变频器)的严重问题,因为许多都配备了欠压保护,导致系统在输入电压凹槽之后几毫秒内跳闸。这种跳闸机构可以与系统控制的总损耗相关联,因为控制电子设备通常由DC-Link电容供电,需要完全重启。该问题的提出的解决方案是通过动力学缓冲恢复存储在旋转质量中的一些机械能。在中断间隔期间,驱动系统在几乎零电磁扭矩下继续操作,只需再生较小的功率以覆盖逆变器中的电损耗。驱动器的仍然控制的制动取决于可用的负载扭矩。因此,实现的再生制动方案允许逆变器以预定的最小电平保持其直流母线电压,在没有耗时的直流链路电容器再充电周期的情况下,扩展电源电压可以重新形成的时间。考虑到逼真的条件,讨论了不同控制方法的优点和缺点。提出和评估了测量结果以证明系统的性能和稳定性。

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