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用于锁相放大器的混合滤波器。

Hybrid filter for lock-in amplifiers.

作者信息

Lindemuth Jeffrey, Codecido Emilio, Faust Noah, Fortney Houston, Daughton David

机构信息

Lake Shore Cryotronics, 575 McCorkle Blvd., Westerville, Ohio 43082, USA.

出版信息

Rev Sci Instrum. 2024 Dec 1;95(12). doi: 10.1063/5.0208389.

Abstract

Lock-in amplifiers are instrumental in the precise measurement of extremely small AC signals within high-noise environments. Traditionally, noise reduction in these instruments relies on infinite impulse response (IIR) filters, which can necessitate prolonged settling times to ensure the acquisition of accurate, statistically independent data. While moving average filters offer faster settling times, their non-monotonic frequency response may not be optimal for noise reduction. Conversely, IIR filters frequently realized as N-pole RC filters exhibit a monotonic frequency response conducive to effective noise reduction. This study presents a hybrid filter architecture that combines a short IIR filter with a longer moving average finite impulse response filter. The objective is to enhance noise reduction as quantified by the filter's equivalent noise bandwidth (ENBW). Theoretical analysis is provided to derive the step response, settling time, frequency response, and ENBW of the hybrid filter configuration. Design methodologies are outlined for hybrid filters that either match the settling time of an N-pole RC filter while achieving a lower ENBW or maintain the ENBW of an N-pole RC filter but with significantly faster settling time. The performance of the hybrid filter is validated through noise measurements of low-value resistors and thermal noise of larger resistors, with results compared to theoretical predictions.

摘要

锁定放大器对于在高噪声环境中精确测量极微小的交流信号至关重要。传统上,这些仪器中的降噪依赖于无限脉冲响应(IIR)滤波器,这可能需要较长的建立时间以确保获取准确的、统计独立的数据。虽然移动平均滤波器的建立时间更快,但其非单调频率响应可能并非降噪的最佳选择。相反,通常实现为N极RC滤波器的IIR滤波器具有单调频率响应,有利于有效降噪。本研究提出了一种混合滤波器架构,它将一个短IIR滤波器与一个较长的移动平均有限脉冲响应滤波器相结合。目的是通过滤波器的等效噪声带宽(ENBW)来增强降噪效果。提供了理论分析,以推导混合滤波器配置的阶跃响应、建立时间、频率响应和ENBW。概述了混合滤波器的设计方法,这些方法要么在实现较低ENBW的同时匹配N极RC滤波器的建立时间,要么保持N极RC滤波器的ENBW但建立时间显著更快。通过对低值电阻的噪声测量和较大电阻的热噪声测量来验证混合滤波器的性能,并将结果与理论预测进行比较。

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