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Active-forced-commutated bridge using hybrid devices for high efficiency voltage source converters

机译:使用混合器件的有源强制换向电桥用于高效电压源转换器

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摘要

In high power converters, the on-state characteristics of semiconductor devices dictate its efficiency performance even if the optimized topologies are adopted. This letter proposes an active-forced-commutated (AFC) bridge that employs the hybrid power devices of thyristor and insulated-gate bipolar transistor (IGBT) to operate as a voltage source converter (VSC) or the building blocks of complex multi-stage high-voltage high-power converters. In this scheme, the thyristors are placed in the main power path that conducts for most of the fundamental period to lower the on-state losses; while the IGBT based full-bridge chainlink (FB-CL) is used for controlled (soft) transition and forced commutation of the main thyristor bridge, operating in short period. This stepped transition voltage also leads to minimized dv/dt exerted on the interfacing transformer. To coordinate the operation of these two parts, the FB stack is designed to operate in a concave polygon stepped transition (CPST) mode for the ordered turn-on and turn-off of thyristors according to different categories of commutation events. Detailed commutation analysis for the AFC-bridge is provided in this letter; also, high level discussions and simulation results are presented to demonstrate its potential technical merits.
机译:在高功率转换器中,即使采用了优化的拓扑结构,半导体器件的导通状态特性也决定了其效率性能。这封信提出了一种有源强制换向(AFC)桥,该桥采用晶闸管和绝缘栅双极晶体管(IGBT)的混合功率器件来作为电压源转换器(VSC)或复杂的多级高电压构建模块电压大功率转换器。在这种方案中,晶闸管放置在主电源路径中,该电源路径在大部分基本周期内都处于导通状态,以降低导通损耗;基于IGBT的全桥链链接(FB-CL)用于在短时期内对主晶闸管桥进行受控(软)转换和强制换相。该阶跃的过渡电压还导致最小化施加在接口变压器上的dv / dt。为了协调这两部分的操作,FB堆栈设计为在凹多边形步进过渡(CPST)模式下运行,以便根据换向事件的不同类别有序地接通和关断晶闸管。这封信中提供了有关AFC桥的详细换向分析。此外,还进行了高层讨论和仿真结果,以证明其潜在的技术优点。

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