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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Low Phase-Noise Microwave Oscillators With Interferometric Signal Processing
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Low Phase-Noise Microwave Oscillators With Interferometric Signal Processing

机译:具有干涉信号处理的低相位噪声微波振荡器

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Phase-noise spectral density of a 9-GHz oscillator has been reduced to -160 dBc/Hz at 1-kHz offset frequency, which is the lowest phase noise ever measured at microwave frequencies. This performance was achieved by frequency locking a conventional loop oscillator to a high-Q sapphire dielectric resonator operating at the elevated level of dissipated power (approx0.4 W). Principles of interferometric microwave signal processing were applied to generate the error signal for the frequency control loop. No cryogenics were used. Two almost identical oscillators were constructed to perform classical two-oscillator phase-noise measurements where one oscillator was phase locked to another. The phase locking was implemented by electronically controlling the level of microwave power dissipated in the sapphire dielectric resonator.
机译:9 GHz振荡器的相位噪声频谱密度在1 kHz偏移频率下已降低至-160 dBc / Hz,这是有史以来在微波频率下测得的最低相位噪声。通过将常规环路振荡器频率锁定在高耗散功率(约0.4 W)下工作的高Q蓝宝石介电谐振器,可以实现这一性能。应用干涉式微波信号处理原理为频率控制回路生成误差信号。没有使用低温。构建了两个几乎相同的振荡器,以执行经典的两个振荡器的相位噪声测量,其中一个振荡器与另一个振荡器锁相。通过电子控制蓝宝石介电共振器中消散的微波功率的水平来实现锁相。

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