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Hybrid one-cycle control scheme for fault-tolerant modular multilevel rectifiers

机译:容错模块化多电平整流器的混合一周期控制方案

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This paper customises the classic one-cycle control (OCC) scheme for modular multilevel rectifiers (MMRs) and overcomes the inherent defect of the OCC. To be specific, a hybrid one-cycle control scheme is proposed combining the OCC and the virtual loop mapping (VLM). First, on the basis of the classic OCC and the volt-second equivalence principle, the relationships between the MMR arm equivalent duty cycle and the sub-module (SM) duty cycle are derived. Then, by making use of VLM methods, the switching frequency of the SM is reduced and the dynamic capacitor voltage balance is obtained as well. Further, to achieve the single-line-to-ground fault-tolerance capability and eliminate the second harmonic ripple in the DC voltage, the constant power control is presented using the negative-sequence voltage compensation. Specifically, the whole control scheme only needs one proportional integration controller, which greatly reduces the complexity of system control and the system cost. The validity of the proposed scheme is verified through simulation and experimental studies.
机译:本文为模块化多电平整流器(MMR)定制了经典的单周期控制(OCC)方案,并克服了OCC的固有缺陷。具体而言,提出了一种将OCC和虚拟环路映射(VLM)相结合的混合一周期控制方案。首先,基于经典的OCC和伏秒等效原理,推导了MMR臂等效占空比与子模块(SM)占空比之间的关系。然后,通过使用VLM方法,降低了SM的开关频率,并且还获得了动态电容器电压平衡。此外,为了实现单线接地容错能力并消除DC电压中的二次谐波纹波,使用负序电压补偿来提供恒定功率控制。具体地,整个控制方案仅需一个比例积分控制器,大大降低了系统控制的复杂度和系统成本。通过仿真和实验研究验证了该方案的有效性。

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