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Active fault-current foldback control in thyrister rectifier for DC shipboard electrical system

机译:直流舰船电气系统晶闸管整流器的有源故障电流折返控制

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Turbine-generator set integrated with the thyristor-based rectifier system provides the dc power for the emerging medium voltage dc (MVDC) shipboard electrical distribution systems. Active foldback via firing-angle control can be implemented in the thyristor rectifier to protect the primary distribution bus, thereby possibly eliminating the bulky dc circuit breakers. This paper presents the detailed modeling and design of the active foldback control by considering multiple impact factors, like dc inductor, control bandwidth, generator frequency, and rectifier topologies. A new foldback control method is proposed to minimize the fault isolation time. The complete design of fault detection, fault current foldback, and post-fault recovery is proposed and simulated for the breakerless MVDC architectures.
机译:与基于晶闸管的整流系统集成的涡轮发电机组提供了新兴介质电压DC(MVDC)船板电气配电系统的直流电源。通过发射角度控制的主动折返可以在晶闸管整流器中实现以保护主分配总线,从而可能消除了庞大的直流断路器。本文通过考虑多次冲击因子,如DC电感,控制带宽,发电机频率和整流拓扑,提供了主动折返控制的详细建模和设计。提出了一种新的折返控制方法,以最小化故障隔离时间。对故障MVDC架构的完整故障检测,故障电流折返和故障后恢复的完整设计。

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