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Opening the box: Survey of high power density inverter techniques from the little box challenge

机译:打开盒子:从小盒子挑战中了解高功率密度逆变器技术

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摘要

The Little Box Challenge (LBC) was a competition sponsored by Google and the IEEE Power Electronics Society in 2014–2015, where participants were challenged to design a high power-density single-phase 2 kVA inverter. This paper surveys the designs from eight different participating teams, including academic grant awardees, finalists, and the winners. Inverter topologies, power decoupling circuits, and thermal management strategies are overviewed for each team. Wide bandgap switches were heavily utilized in both the inverter and power decoupling circuits, particularly GaN switches. Most teams utilized a full-bridge inverter with some variations and the most common power decoupling strategy was the use of a synchronous buck converter and a power buffering capacitor. One team used a multi-level inverter approach and a number of teams proposed innovative power decoupling topologies. Heat sinks and active cooling systems, many of which were custom made, were crucial for teams to stay within the 50 °C case temperature limit. The resulting power density of the surveyed teams ranged from 55.8 to 216 W/in, all of which exceed the 50 W/in LBC requirement. This paper surveys the approaches for various teams, shares experimental results from the Taiwan Tech team, and highlights some innovations from the teams that participated in the LBC.
机译:“小盒子挑战赛(LBC)”是Google和IEEE电力电子学会在2014-2015年赞助的竞赛,参赛者被要求设计一个高功率密度单相2 kVA逆变器。本文调查了来自八个不同参与团队的设计,包括学术资助获奖者,决赛入围者和获奖者。概述了每个团队的逆变器拓扑,电源去耦电路和热管理策略。宽带隙开关在逆变器和电源去耦电路中得到大量利用,尤其是GaN开关。大多数团队使用全桥逆变器并进行一些改动,最常见的电源去耦策略是使用同步降压转换器和电源缓冲电容器。一个团队使用了多电平逆变器方法,许多团队提出了创新的电源去耦拓扑。散热器和主动冷却系统(其中许多是定制的)对于团队保持在50°C的外壳温度限制内至关重要。被调查团队的最终功率密度范围为55.8至216 W / in,所有功率均超过了50 W / in LBC的要求。本文调查了各种团队的方法,分享了台湾技术团队的实验结果,并重点介绍了参加LBC的团队的一些创新。

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