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Enumeration and Analysis of DC–DC Converter Implementations Based on Piezoelectric Resonators

机译:基于压电谐振器的DC-DC转换器实现的枚举与分析

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Demand for power electronics with smaller volume, lighter weight, and lower cost will eventually require new converter energy storage technologies with fundamentally higher power density and efficiency limits. This motivates investigation into piezoelectric resonators (PRs), which offer very high power density and efficiency capabilities and significantly improved scaling properties compared to magnetics. PRs have been used in power conversion previously, but the realm of possible converter implementations using only PRs for energy storage has seen little exploration. In this work, we enumerate and evaluate dc-dc converter topologies and switching sequences that best utilize aPRas the only energy storage component, and that enable low-loss resonant "soft charging" of the PR's input capacitance with voltage regulation capability. To compare these implementations, we present analysis techniques for their operation and periodic steady-state solutions considering practical constraints. In addition, we provide useful techniques for estimating PR utilization and efficiency, which we validate experimentally in a 200-100-V, 25-W rated prototype. This prototype exhibits peak efficiency >99% as well as high efficiency (>= 96%) across awide range of operating conditions, illustrating the promise of PR-based converters for high voltage, low power applications. This article is accompanied by an instructional video for selecting and analyzing PR-based dc-dc converter implementations.
机译:较小的体积,重量轻,成本更低的电力电子设备最终需要具有新的电力密度和效率限制的新型转换器能量存储技术。这激励了对压电谐振器(PRS)的调查,它提供了非常高的功率密度和效率能力,并与磁性相比显着提高了缩放性能。 PRS已经在先前用于电力转换,但可能仅使用PRS实现能量存储器的变换器实现的领域几乎没有探索。在这项工作中,我们枚举和评估最佳利用APRA唯一能量存储部件的DC-DC转换器拓扑和切换序列,并且能够通过电压调节能力实现PR的输入电容的低损耗谐振“软充电”。为了比较这些实现,我们考虑实际限制的运行和定期稳态解决方案的分析技术。此外,我们提供了有用的技术,用于估算PR利用率和效率,我们在200〜100 v,25 W额定原型的实验上进行实验验证。该原型表现出峰值效率> 99%以及高效率(> = 96%)在醒来的操作条件下,说明了高电压,低功耗应用的PR基转换器的承诺。本文伴随着一个教学视频,用于选择和分析PR基DC-DC转换器实现。

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