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Parameterized Analysis of Zero Voltage Switching in Resonant Converters for Optimal Electrode Layout of Piezoelectric Transformers

机译:压电变压器最佳电极布置的谐振变换器零电压开关参数化分析

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摘要

Ring shaped PTs (Piezoelectric Transformers) are an attractive alternative to magnetics in power converters. The achievable energy efficiency is 98% and the power density is up to 30W/cm3. Additionally power supplies based on PTs display low levels of conducted and radiated EMI due to power conversion based on the piezoelectric effect. Rooted in the physics of this effect, both the in- and output terminal of a PT has a noticeable parasitic capacitance. In a common half-bridge power stage without any supporting magnetic components, the input parasitic capacitance can lead to hard switching losses that are in the range of the actual power rating of a specific PT. In this paper it is demonstrated how the electrode layout of a PT can be designed to enable ZVS (Zero Voltage Switching). This optimization is made simple with a novel set of accurate and simple symbolic equations which relates ZVS constraints to the physical electrode layout of a PT. These properties takes basis in the formulation of an equivalent electrical PT circuit that is valid around the frequency of operation.
机译:环形PT(压电变压器)是功率转换器中磁性材料的一种有吸引力的替代品。可达到的能源效率为98%,功率密度高达30W / cm3。此外,由于基于压电效应的功率转换,基于PT的电源显示出低水平的传导和辐射EMI。根源于这种效应的物理意义,PT的输入和输出端子均具有明显的寄生电容。在没有任何辅助磁性元件的普通半桥功率级中,输入寄生电容会导致硬开关损耗,该损耗在特定PT的实际额定功率范围内。在本文中,演示了如何设计PT的电极布局以实现ZVS(零电压开关)。使用一组精确而简单的新符号方程式可以使这种优化变得简单,该方程式将ZVS约束与PT的物理电极布局相关联。这些特性以等效PT电路的公式为基础,该等效PT电路在工作频率附近有效。

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