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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >A Study of Phase Noise and Frequency Error of a Fractional-N PLL in the Course of FMCW Chirp Generation
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A Study of Phase Noise and Frequency Error of a Fractional-N PLL in the Course of FMCW Chirp Generation

机译:FMCW Chirp生成过程中小数N分频PLL的相位噪声和频率误差的研究

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This paper presents the theoretical and experimental results on the phase noise spectrum and the rms frequency error of a fractional-N phase-locked loop (PLL) under frequency-modulated continuous-wave (FMCW) chirp generation. The phase noise spectrum under modulation is analytically calculated for a second-order charge pump PLL with a feedback divider ratio linearly changing over time. This is followed by an analysis of the steady-state rms frequency error of the output frequency after PLL settling is achieved during chirp generation. A fractional-N PLL with integrated frequency ramp generator is presented. Phase noise and jitter measurements on the PLL under modulation are performed at the output of the programmable feedback divider. The resulting low-frequency rms jitter is reduced by about 9 dB with doubling the charge pump current, and reduced by about 6 dB with halving the ramp slope. The rms frequency error under FMCW modulation is measured at the modulated voltage-controlled oscillator output. The dependence of the frequency error on the loop filter capacitance for various ramp slopes is given. A frequency error of 112 kHz is achieved with a ramp slope of 1.28 GHz/80 mu s at a carrier frequency of 62 GHz. The noise measurements are in good agreement with the developed phase noise model. A programmable loop filter capacitance is suggested to accommodate the static phase offset and the resulting noise performance to the ramp slope.
机译:本文介绍了在调频连续波(FMCW)线性调频脉冲产生下,分数N锁相环(PLL)的相位噪声频谱和均方根频率误差的理论和实验结果。对于具有反馈分频比随时间线性变化的二阶电荷泵PLL,可以分析计算调制后的相位噪声频谱。接下来,分析在线性调频产生期间实现PLL稳定之后的输出频率的稳态均方根频率误差。提出了带有集成频率斜坡发生器的小数N分频PLL。在可编程反馈分频器的输出上执行调制后的PLL上的相位噪声和抖动测量。电荷泵电流加倍时,低频均方根抖动降低约9 dB,而斜坡斜率减半则降低约6 dB。 FMCW调制下的均方根频率误差在调制的压控振荡器输出端测量。给出了各种斜坡斜率下频率误差对环路滤波器电容的依赖性。在62 GHz的载波频率下,以1.28 GHz / 80 ms的斜率实现了112 kHz的频率误差。噪声测量与开发的相位噪声模型非常吻合。建议使用可编程环路滤波器电容来适应静态相位偏移以及由此产生的对斜坡斜率的噪声性能。

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