相位锁定环路中的校准技术:理论基础和实际应用

Salvatore Levantino
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引用次数: 0

摘要

数字辅助模拟电路正在成为现代 CMOS 工艺的主流解决方案,因为它们能提高电路性能并降低实施成本[1]。数字辅助最有代表性的例子是模拟块的非线性补偿,它是通过在输出端应用非线性的数字逆来实现的。然而,由于数字反演并不是先验已知的,因此必须对其进行估算,而估算需要在后台适应环境条件。这通常是通过自适应滤波来实现的,即在反馈中关闭系统识别引擎,在非线性块的输入端注入调制。本文在回顾了 PLL 和自适应滤波器的基础知识后,将探讨 PLL 采用的最重要的校准方法。
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Calibration Techniques in Phased-Locked Loops: Theoretical basis and practical applications
Digitally assisted analog circuits are becoming the mainstream solution in modern CMOS processes as they improve circuit performance and reduce implementation costs [1] . The most representative example of digital assistance is the compensation of the nonlinearity of an analog block, which is done by applying the digital inverse of the nonlinearity at the output. However, as the digital inverse is not known a priori, it has to be estimated, and the estimation needs to adapt in the background to the environmental conditions. This is typically accomplished by relying on adaptive filtering, i.e., by closing a system-identification engine in feedback that injects a modulation at the input of the nonlinear block. This article, after reviewing the basics of both PLLs and adaptive filters, will explore the most significant calibrations adopted in PLLs.
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