再生模式下三相PWM电流/电压源整流器的稳定性问题

J. Espinoza, G. Joós, M. Perez, T. Moran
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引用次数: 33

摘要

脉宽调制电流源和电压源整流器正成为一个有趣的替代来源的可变直流电源。优点包括降低线路电流谐波畸变和完全位移功率因数控制,包括无功补偿。因此,文献最近报道了不同的控制策略,其中有功功率从交流电源流入负载。不幸的是,当有功功率从负载流入变换器时,它通常通过开关电阻在直流链路中耗散。这种做法降低了整体效率;特别是当再生是正常的工作方式时,如下坡带式输送机和矿用电动铲。在这些情况下,再生工作模式应该永久维持。这项工作回顾了有关这种操作模式的几个重要问题;具体来说,是变流器负荷系统的稳定性,以及闭环运行的稳定性分析。本文分析了常规线性控制器(如pi)控制的PWM整流器在再生工作模式下可能出现的不稳定问题,并分析了克服这一困难的控制策略。仿真结果证实了理论考虑的有效性。
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Stability issues in three-phase PWM current/voltage source rectifiers in the regeneration mode
Pulse-width modulated current-source and voltage-source rectifiers are becoming an interesting alternative as a source of variable DC power. Advantages include reduced line current harmonic distortion and complete displacement power factor control, including reactive power compensation. Consequently, literature has recently reported different control strategies, where the active power flows from the AC mains into the load. Unfortunately, when active power flows from the load into the converter, it is usually dissipated in the DC link by means of switched resistors. Such approach reduces the overall efficiency; specially, when regeneration is the normal operating mode as in down-hill belt conveyors and electrical shovels in mining applications. In these cases, the regenerative operating mode should be permanently sustained. This work reviews several important issues concerning such an operating mode; specifically, the stability of the converter-load system, and stability analysis of closed loop operation. The paper shows that PWM rectifiers controlled by a regular linear controller (such as PIs) may become unstable under the regenerative operating mode and analyses a control strategy to overcome such difficulties. Simulated results confirm the validity of theoretical considerations.
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