University of York, York, UK.
IEEE Trans Ultrason Ferroelectr Freq Control. 2012 Mar;59(3):382-90. doi: 10.1109/TUFFC.2012.2207.
This paper describes a greatly simplified model for the prediction of phase noise in oscillators which use a negative resistance as the active element. It is based on a simple circuit consisting of the parallel addition of a noise current, a negative admittance/resistance, and a parallel (Qlimited) resonant circuit. The transfer function is calculated as a forward trans-resistance (VOUT/IIN) and then converted to power. The effect of limiting is incorporated by assuming that the phase noise element of the noise floor is kT/2, i.e., -177 dBm/Hz at room temperature. The result is the same as more complex analyses, but enables a simple, clear insight into the operation of oscillators. The phase noise for a given power in the resonator appears to be lower than in feedback oscillators. The reasons for this are explained. Simulation and experimental results are included.
本文描述了一种极大简化的振荡器相位噪声预测模型,该振荡器使用负阻作为有源元件。它基于一个简单的电路,由噪声电流、负导纳/电阻和并联(Q 限制)谐振电路的并联组成。传递函数作为正向跨阻(VOUT/IIN)进行计算,然后转换为功率。通过假设噪声基底的相位噪声元件为 kT/2(即室温下为-177 dBm/Hz)来纳入限制效应。结果与更复杂的分析相同,但能够简单清晰地了解振荡器的工作原理。给定谐振器中的功率的相位噪声似乎低于反馈振荡器中的相位噪声。对此原因进行了解释。包括了仿真和实验结果。