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首页> 外文期刊>IEEE Transactions on Power Electronics >Modelling a Multilevel LCC Resonant AC-DC Converter for Wide Variations in the Input and the Load
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Modelling a Multilevel LCC Resonant AC-DC Converter for Wide Variations in the Input and the Load

机译:为输入和负载的广泛变化建模多电平LCC谐振AC-DC转换器

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摘要

Several applications need a high power, high output voltage ac/dc converter. The structure includes a dc/dc resonant stage, which is fed from a three-phase line. Due to standards, rectified dc input voltage varies largely from 400 to 750 V affecting the adversely overall design and current levels. In fact, losses in the inverter become unbearable if both switching frequency and transferred power are desired beyond a certain level. In those cases, it is necessary to connect several switches in parallel. As an alternative, the new switches can configure a new modular structure instead, adding more flexibility in the control to compensate input voltage variations. As a result, the required circulating current is reduced to a half, with benefits in total power losses. Moreover, the nature of the topology allows a reconfiguration of the resonant net (LCC) for low power, reducing even further the minimum circulating current under those conditions (fluoroscopy, for instance). In this paper, the new multilevel resonant topology is mathematically modeled and proposed for radiography and fluoroscopy. An example illustrates the design procedure for a given application at 100 kW, 50-150 kV.
机译:一些应用需要大功率,高输出电压的AC / DC转换器。该结构包括一个dc / dc谐振级,该级从三相线路馈电。根据标准,整流后的直流输入电压在400至750 V之间变化很大,从而影响了总体设计和电流水平。实际上,如果要求开关频率和传输功率都超过一定水平,则逆变器中的损耗将变得难以承受。在这种情况下,必须并联连接多个交换机。作为替代方案,新开关可以配置新的模块化结构,从而增加了控制的灵活性,以补偿输入电压的变化。结果,所需的循环电流减小到一半,从而带来了总功率损耗的好处。此外,拓扑的性质允许为低功率重新配置谐振网络(LCC),从而进一步降低了这些条件下的最小循环电流(例如,荧光检查)。在本文中,对新的多层共振拓扑进行了数学建模,并提出了用于射线照相和荧光透视的方法。一个示例说明了给定应用在100 kW,50-150 kV下的设计过程。

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