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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Characterization of Nonstationary Phase Noise Using the Wigner–Ville Distribution
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Characterization of Nonstationary Phase Noise Using the Wigner–Ville Distribution

机译:使用Wigner-Ville分布表征非平稳相位噪声

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Oscillators and atomic clocks, as well as lasers and masers, are affected by physical mechanisms causing amplitude fluctuations, phase noise, and frequency instabilities. The physical properties of the elements composing the oscillator as well as external environmental conditions play a role in the coherence of the oscillatory signal produced by the device. Such instabilities demonstrate frequency drifts, modulation, and spectrum broadening and are observed to be nonstationary processes in nature. Most of the tools which are being used to measure and characterize oscillator stability are based on signal processing techniques, assuming time invariance within a temporal window, during which the signal is assumed to be stationary. This letter proposes a new time-frequency approach for the characterization of frequency sources. Our technique is based on the Wigner–Ville time-frequency distribution, which extends the spectral measures to include the temporal nonstationary behavior of the processes affecting the coherence of the oscillator and the accuracy of the clock. We demonstrate the use of the technique in the characterization of nonstationary phase noise in oscillators.
机译:振荡器和原子钟,以及激光器和涂料,受到导致幅度波动,相位噪声和频率不稳定性的物理机制的影响。构成振荡器的元件的物理性质以及外部环境条件在设备产生的振荡信号的相干中起作用。这种稳定性展示频率漂移,调制和光谱扩展,并且被观察到本质上是非营养的过程。用于测量和表征振荡器稳定性的大多数工具基于信号处理技术,假设时间窗口内的时间不变性,在此期间假设信号被静止。这封信提出了一种新的时频方法,用于表征频率源。我们的技术基于Wigner-Ville时频分布,其扩展了频谱措施,包括影响振荡器相干性的过程的时间不存在行为和时钟的精度。我们展示了技术在振荡器中的非间断相位噪声的表征中的使用。

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