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iBreaker: Intelligent Tri-mode Solid State Circuit Breaker Technology

机译:iBRERER:智能三模式固态断路器技术

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Power electronics enabled DC microgrids mandate fast and low-loss protection against circuit faults. This paper discusses the major challenges and potential solid state circuit breaker (SSCB) solutions to address this need. It proposes a new SSCB methodology comprising four key elements: use of wide bandgap semiconductor (WBG) switches, tri-mode operation, combined digital and analog control, and universal hardware/software architectures. We report the design of a 380V/20A intelligent tri-mode SSCB (iBreaker) based on these design principles. We use SiC MOSFET and GaN HEMT in the iBreaker, which features three distinct operation modes: ON, OFF, and PWM Current Limiting (PWM-CL). While the conventional ON/OFF states allow the iBreaker to conduct normal load currents or interrupt fault currents, the PWM-CL state allows the iBreaker to gradually charge the input capacitors of electronic loads at a limited current level during load startup. The iBreaker can switch from the PWM-CL state to the OFF state if a true short circuit fault is detected. In the PWM-CL state, a variable frequency PWM control technique is proposed to optimally operate a buck converter for soft start and short fault detection. The new iBreaker is prototyped and experimentally verified.
机译:电力电子设备使能DC MicroGrids授权快速和低损耗防止电路故障。本文讨论了解决这种需求的主要挑战和潜在的固态断路器(SSCB)解决方案。它提出了一种新的SSCB方法,包括四个关键要素:使用宽带隙半导体(WBG)开关,三模式操作,组合数字和模拟控制以及通用硬件/软件架构。我们根据这些设计原则报告了380V / 20A智能三模式SSCB(IBREXER)的设计。我们在iBreaker中使用SIC MOSFET和GAN HEMT,其中包括三种不同的操作模式:ON,OFF和PWM电流限制(PWM-CL)。虽然传统的ON / OFF状态允许IBREXER进行正常负载电流或中断故障电流,但PWM-CL状态允许IBREXER在负载启动期间在有限电流电平时逐渐充电电子负载的输入电容。如果检测到真正的短路故障,iBREXER可以从PWM-CL状态切换到OFF状态。在PWM-CL状态下,提出了一种可变频率PWM控制技术,以最佳地操作降压转换器,用于软启动和短故障检测。新的iBREXER是原型的,实验验证。

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