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Fourier Analysis of Signal Waveforms in An Ideal Concurrent Dual-Band Class-D Power Amplifier

机译:理想并发双频电池专用功率放大器中信号波形的傅里叶分析

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Recently, a concurrent dual-band class-D power amplifier has been demonstrated to overcome the limitations of reduced efficiency in concurrent dual-band linear power amplifiers. However, the configuration could not be symbolically analyzed like its single-band counterpart due to the complicated nature of dual-band signals. This brief aims to provide a theoretical basis for idealized concurrent dual-band class-D operation. It applies an alternate representation of the sum of two sinusoids which helps the formulation of a technique to analytically extract the complex Fourier series coefficients of the current and voltage waveforms of the power amplifier. Expressions for output power and efficiency are derived, showing a theoretical drain efficiency of 100%. The theoretically obtained results are validated using observations from literature as well as independent Harmonic Balance simulation.
机译:近来,已经证明了一种并发双频电流机-D功率放大器以克服并发双频线性功率放大器中效率降低的限制。但是,由于双频信号的复杂性,因此无法象征地分析其单频段对应物。本简要旨在为理想化的并发双频频率-D操作提供理论依据。它适用于两个正弦曲线的总和的替代表示,其有助于制定一种技术来分析功率放大器的电流和电压波形的复杂傅里叶串联系数。推导出输出功率和效率的表达,显示出100%的理论排水效率。使用文献的观察以及独立的谐波平衡模拟来验证理论上获得的结果。

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