An Nth-harmonic oscillator using an N-push coupled oscillator array with voltage-clamping circuits

Shih-Chieh Yen, T. Chu
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引用次数: 44

Abstract

The push-push oscillator is commonly used for implementing a second-harmonic oscillator. By combining two out-of-phase oscillators, their fundamental frequency components are canceled and the second-harmonic components are enhanced. This structure can be extended to triple-push, quadruple-push and hence N-push harmonic oscillators. From the oscillator injection-locking phenomenon, the relative phase between coupled oscillators can be controlled by the oscillator free-running frequency. As the output phase-shifted version signals are properly shaped and combined, the desired harmonic components are constructively added and lower-order harmonic components are canceled. This structure can be viewed as the general case of push-push oscillators. Since the output power is combined in a passive circuit, it does not suffer from the power limit of the output device in the cascade structure. The desired harmonic component can be selected by tuning the relative phase of the coupled oscillators and the conductive angle of the voltage-clamping circuit. Second-harmonic, third-harmonic and fourth-harmonic oscillators are designed and verified experimentally.
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一种n次谐波振荡器,采用带电压箝位电路的n推耦合振荡器阵列
推-推振荡器通常用于实现二次谐波振荡器。通过组合两个失相振荡器,消除了它们的基频分量,增强了二次谐波分量。这种结构可以扩展到三推、四推和n推谐波振荡器。从振荡器注入锁定现象出发,可以通过振荡器的自由运行频率来控制耦合振荡器之间的相对相位。当输出相移版本信号被适当地整形和组合时,期望的谐波分量被建设性地添加,低阶谐波分量被抵消。这种结构可以看作是推-推振荡器的一般情况。由于输出功率在无源电路中组合,因此不会受到级联结构中输出器件的功率限制。可以通过调谐耦合振荡器的相对相位和压钳电路的导电角来选择所需的谐波分量。设计了二谐波、三谐波和四谐波振荡器,并进行了实验验证。
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