用于电源变换器边界导通模式控制的隔离式SenseGaN电流监测系统的研制

Mehrdad Biglarbegian, Namwon Kim, Tiefu Zhao, B. Parkhideh
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引用次数: 3

摘要

本文介绍了利用氮化镓(GaN)晶体管的隔离式SenseGaN电流传感技术的设计。SenseGaN的隔离技术为传感元件与功率模块的集成提供了机会,并使功率转换器中的许多控制方案成为可能。这可以有效地为智能设备监测、当前高频控制技术的实施以及诊断/预后发展的适当反馈开辟更广阔的领域。在这项工作中,重点是SenseGaN技术的实际挑战,并提出了基于电感的电流隔离。使用电流镜像方法,作者定义了一个光标用于检测功率转换器的工作模式,即在DC-DC升压和DC-AC转换器中,连续导通模式(CCM)与边界导通模式(BCM)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Isolated SenseGaN current monitoring for boundary conduction mode control of power converters
This paper presents the design of the Isolated SenseGaN (Iso-SenseGaN) current sensing technique using Gallium Nitride (GaN) transistors. The isolation technique for the SenseGaN brings an opportunity for integration of sensing element with the power modules, and enables many control schemes in power converters. This could effectively open broader area for smart device monitoring, implementation of current controlling techniques at high frequency, and proper feedback for diagnostics/prognostics developments. In this work, the focus is on the practical challenges for the SenseGaN technique and presenting the inductor-based galvanic isolation. Using the current mirroring method, the authors defined a cursor for detection of the power converter operation mode, i.e., Continuous Conduction Mode (CCM) vs. Boundary Conduction Mode (BCM) in a DC-DC boost and a DC-AC converter a real-time setup.
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