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Fractional-N PLL phase noise effects on baseband signal-to-noise ratio in FMCW radars

机译:N分频PLL相位噪声对FMCW雷达中基带信噪比的影响

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This work presents a model for estimating the effect of the fractional-N phase locked loop (Frac-N PLL) phase noise (PN) on frequency modulated continuous wave (FMCW) radar baseband (BB) signal-to-noise ratio (SNR). The model captures the SNR degradation due to PN in secondary radars as well as the range correlation effect in primary radars which reduces the amount of SNR degradation. Estimates from the proposed model are in good agreement with measurement results from a dual band FMCW radar test chip fabricated on an IBM7WL BiCMOS 0.18 μm technology. In secondary radar mode, a BB SNR of 30.0 and 23.0 dB is achieved at the 2.4 and 5.8 GHz bands respectively while in primary radar mode a BB SNR of 35.0 and 33.7 dB is achieved at the same bands. The fabricated FMCW radar test chips achieved a ranging precision of 5.2 and 0.3 mm in secondary and primary radar modes respectively.
机译:这项工作提出了一个模型,用于估计分数N锁相环(Frac-N PLL)相位噪声(PN)对调频连续波(FMCW)雷达基带(BB)信噪比(SNR)的影响。该模型捕获了由于辅助雷达中的PN引起的SNR下降以及主要雷达中的距离相关效应,从而降低了SNR下降的程度。所提出模型的估计值与在IBM7WL BiCMOS 0.18μm技术上制造的双频带FMCW雷达测试芯片的测量结果非常吻合。在辅助雷达模式下,分别在2.4和5.8 GHz频带上获得30.0和23.0 dB的BB SNR,而在主雷达模式下,在相同频带下获得35.0和33.7 dB的BB SNR。制成的FMCW雷达测试芯片在次要和主要雷达模式下分别达到5.2和0.3 mm的测距精度。

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