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Thermodynamical Phase Noise in Oscillators Based on L-C Resonators

机译:基于L-C谐振器的振荡器热力学相位噪声

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摘要

Using a new Admittance-based model for electrical noise able to handle Fluctuations and Dissipations of electrical energy, we explain the phase noise of oscillators that use feedback around L-C resonators. We show that Fluctuations produce the Line Broadening of their output spectrum around its mean frequency f0 and that the Pedestal of phase noise far from f_0 comes from Dissipations modified by the feedback electronics. The charge noise power AFkTIR C~2/s that disturbs the otherwise periodic fluctuation of charge these oscillators aim to sustain in their L-C-R resonator, is what creates their phase noise proportional to Leeson's noise figure F and to the charge noise power 4kT/R C~2/s of their capacitance C that today's modelling would consider as the current noise density in A~2/Hz of their resistance R. Linked with this (A~2/Hz↔C~2/s) equivalence, R becomes a random series in time of discrete chances to Dissipate energy in Thermal Equilibrium (TE) giving a similar series of discrete Conversions of electrical energy into heat when the resonator is out of TE due to the Signal power it handles. Therefore, phase noise reflects the way oscillators sense thermal exchanges of energy with their environment.
机译:使用新的基于导纳的电噪声模型来处理电能的波动和耗散,我们解释了使用L-C谐振器反馈的振荡器的相位噪声。我们表明,波动会在其平均频率f0附近产生其输出频谱的线展宽,并且远离f_0的相位噪声基座来自反馈电子设备修改的耗散。电荷噪声功率AFkTIR C〜2 / s扰乱了这些振荡器旨在维持在其LCR谐振器中的电荷的其他周期性波动,即产生了与利森噪声系数F和电荷噪声功率4kT / RC〜成比例的相位噪声。今天的建模将其电容C的2 / s视为其电阻R的A〜2 / Hz处的当前噪声密度。与这个等效值(A〜2 /Hz↔C〜2 / s)链接在一起,R成为随机数在热平衡(TE)中耗散能量的离散时间序列中,当谐振器由于其所处理的信号功率不在TE中时,给出了类似的一系列离散的电能转化为热的离散序列。因此,相位噪声反映了振荡器感知与其环境进行热交换的方式。

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