PowerSynth 2:自动化电力电子物理设计合成与定制和异构组件

IF 3.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Mehran Sanjabiasasi;H. Alan Mantooth;Yarui Peng
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引用次数: 0

摘要

电子设计自动化(EDA)在电力电子工业中具有重要的意义。随着电力电子电路变得越来越复杂,传统的物理设计试错法变得不那么有效和耗时。新颖的包装技术和智能物理设计自动化解决方案对于克服这些挑战并产生可靠的解决方案至关重要。PowerSynth 2是一个EDA工具,用于生成和优化电源模块布局。为了将布局合成能力扩展到功率模块之外,布局引擎需要考虑各种定制组件,如电容器、电感器和栅极驱动器。本研究为PowerSynth 2中的布局合成过程提出了一个新的框架,以允许导入用户定义的组件。该算法通过引入自定义元件和引脚板的分层框架,可以有效地生成电力电子布局。它将把物理设计过程扩展到更广泛的设计类型,如转换器和服务器板。对转换器设计实例进行了测试,证明了所提出的设计工具的效率和可扩展性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PowerSynth 2: Automated Power Electronics Physical Design Synthesis With Custom and Heterogeneous Components
Electronics Design Automation (EDA) has shown significant importance in the power electronics industry. As power electronic circuits become more complex, the traditional trial-and-error approach in physical design becomes less effective and time-consuming. Novel packaging technologies and intelligent physical design automation solutions are crucial to overcome these challenges and produce reliable solutions. PowerSynth 2 is an EDA tool for generating and optimizing power module layouts. To extend the layout synthesis capability beyond power modules, the layout engine needs to consider various custom components such as capacitors, inductors, and gate drivers. This research presents a novel framework for the layout synthesis process in PowerSynth 2 to allow importing user-defined components. The proposed algorithm can effectively generate a Power Electronics layout by introducing a hierarchical framework for custom components and pin pads. It will extend the physical design process to broader design types, such as converters and server boards. Examples of converter designs are tested, demonstrating the efficiency and scalability of the proposed design tools.
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来源期刊
CiteScore
8.60
自引率
0.00%
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