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Efficient Waveform Preservation of Discrete Spectrum Signals With Multilayered Piezoelectric Transformer

机译:多层压电变压器有效保持离散频谱信号的波形

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Transformation of square pulse signals by the multilayer Rosen type piezoelectric transformer (PT) is investigated with the goals to preserve the signal waveform and achieve maximum efficiency for power electronics and LED lighting applications. The voltage gain of the transformer is calculated from equations of linear piezoelectricity and motion for a broad frequency range that includes multiple resonant frequencies of PT. The transformation of the square pulse is simulated numerically by applying the voltage gain function to the Fourier spectrum of the input signal, and then, restoring the time-domain output signal from its spectrum. A half-bridge MOSFET amplifier is built to drive the PT in the experimental setup. The measurements of the input and output waveforms and their Fourier spectra verify the calculations. It is shown that the components of the spectrum and the waveform of the square pulse signal can be preserved in the output signal by using multiple resonant frequencies of the transformer. With the accurate match between the signal harmonics and the resonant frequencies of the transformer voltage gain, the square pulse signal provides higher output power than a sine or a square wave, provided that the dominant harmonics of all signals have the same amplitude.
机译:研究了多层Rosen型压电变压器(PT)对方形脉冲信号的转换,目的是保留信号波形并在电力电子和LED照明应用中实现最大效率。变压器的电压增益是根据包括多个共振频率PT在内的宽频率范围内的线性压电和运动方程式计算得出的。通过将电压增益函数应用于输入信号的傅立叶频谱,然后从其频谱中恢复时域输出信号,来对方脉冲的变换进行数值模拟。在实验设置中,内置了一个半桥MOSFET放大器来驱动PT。输入和输出波形的测量及其傅立叶频谱可验证计算结果。结果表明,通过使用变压器的多个谐振频率,方波信号的频谱分量和波形可以保留在输出信号中。在信号谐波与变压器电压增益的谐振频率之间精确匹配的情况下,只要所有信号的主要谐波具有相同的幅度,方波信号就可以提供比正弦波或方波更高的输出功率。

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