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Power Calculation for Direct Power Control of Single-Phase Three-Level Rectifiers Without Phase-Locked Loop

机译:无锁相环的单相三电平整流器直接功率控制的功率计算

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摘要

Synchronization unit such as single-phase grid voltage phase-locked loop (PLL) is essential to control scheme in single-phase converters. However, the design of PLL is not simple and increases the complexity of control system, and the performance of PLL could be impacted by the waveform quality of the main voltage. Therefore, in this paper, a novel single-phase power calculation method without PLL is proposed to improve the performance of single-phase three-level rectifier which is widely used in railway traction drive system. Moreover, a strategy to compensate phase angle and power calculation error is presented to improve the power calculation precision and enlarge operation range. Then the compensation strategy and the single-phase power calculation method are combined with a common direct power control (DPC) to form a no-PLL control system for single-phase three-level rectifiers. Finally, performance of the proposed scheme is verified through experimental tests and compared with two traditional PLL-based control schemes.
机译:单相电网电压锁相环(PLL)等同步单元对于单相转换器的控制方案至关重要。然而,锁相环的设计并不简单,并且会增加控制系统的复杂性,并且锁相环的性能可能会受到主电压波形质量的影响。因此,本文提出了一种不带锁相环的新型单相功率计算方法,以提高在铁路牵引驱动系统中广泛应用的单相三电平整流器的性能。提出了一种补偿相位角和功率计算误差的策略,以提高功率计算精度,扩大运算范围。然后将补偿策略和单相功率计算方法与通用直接功率控制(DPC)相结合,以形成单相三电平整流器的无PLL控制系统。最后,通过实验测试验证了所提方案的性能,并与两种传统的基于PLL的控制方案进行了比较。

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