Microwave Dielectric Resonator Discriminator Oscillator

C. Buoli, G. Mora, T. Turillo
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引用次数: 3

Abstract

A new method (**) to improve the phase noise near the carrier of microwave frequency sources, particularly suitable for Low Capacity Digital Radio (LCDR) systems, is here presented. This is obtained including in a DRO a frequency discriminator, realized by means of the same oscillator cavity. The transmitted and reflected waves of the cavity are measured, combined and detected by a couple of diodes with low 1/f noise. These signals are compared in a differential amplifier that drives a varactor phase-shifter set between the active device and the cavity. In this way the reflection coefficient phase of the active device can be changed in order to correct its phase transients. As a result, lower the 1/f noise of the diodes with respect to the 1/f noise of the active device, greater the reduction of the oscillator phase noise. This technique applied to a microwave DRO may replace the synthesizer architecture achieving the same performance with lower circuit complexity, greater hardware compactness and lower cost.
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微波介电谐振器鉴别振荡器
本文提出了一种改善微波频率源载波附近相位噪声的新方法,特别适用于低容量数字无线电(LCDR)系统。这是在一个DRO中包含一个鉴频器,通过相同的振荡器腔来实现。通过一对具有低1/f噪声的二极管测量、组合和检测腔体的透射波和反射波。这些信号在驱动有源器件和腔之间变容移相器的差分放大器中进行比较。通过这种方法,可以改变有源器件的反射系数相位,以纠正其相位瞬变。因此,相对于有源器件的1/f噪声,二极管的1/f噪声越低,振荡器相位噪声的降低就越大。该技术应用于微波DRO可以取代合成器架构,以更低的电路复杂性,更大的硬件紧凑性和更低的成本实现相同的性能。
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