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Improved Modulation Scheme for Loss Balancing of Three-Level Active NPC Converters

机译:三电平有源NPC转换器的损耗平衡的改进调制方案

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The three-level neutral point-clamped (NPC) converter has attracted much attention in high-power medium-voltage applications, but it is well-known that the NPC topology suffers from unequal power loss distribution among its semiconductor devices. The power loss unbalance problem becomes especially severe when the converter is operating at low fundamental frequencies. To overcome the loss unbalance problem of the NPC converter, the active NPC (ANPC) technique was introduced. However, it is demonstrated in this paper that in many cases, the conventional modulation method for the ANPC converter only marginally relieves the loss unbalance problem. This paper proposes a new modulation scheme (named the adaptive doubled frequency modulation) for the three-level ANPC converter, which significantly improves the power loss and thermal sharing among the semiconductor devices. The basic idea of the proposed scheme is adaptively adjusting the duty cycles of the switching states for every switching cycle, so as to optimize the power loss distribution. Simulation and experimental results verify this new method.
机译:三电平中性点钳位(NPC)转换器已在高功率中压应用中引起了广泛关注,但是众所周知,NPC拓扑在其半导体器件之间遭受不均等的功率损耗。当转换器以低基频工作时,功率损耗不平衡问题变得尤为严重。为了克服NPC转换器的损耗不平衡问题,引入了有源NPC(ANPC)技术。但是,本文证明,在许多情况下,用于ANPC转换器的常规调制方法只能稍微缓解损耗不平衡问题。本文为三电平ANPC转换器提出了一种新的调制方案(称为自适应双频调制),该方案显着改善了半导体器件之间的功率损耗和热量共享。所提出的方案的基本思想是针对每个开关周期自适应地调节开关状态的占空比,从而优化功率损耗分布。仿真和实验结果验证了该新方法。

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