Dual-channel cooperative matching for chirp transform spectrometry

In applications such as deep-space exp\\loration and atmospheric remote sensing, chirp transform spectrometer (CTS) systems based on surface acoustic wave (SAW) dispersive delay lines have become a key spectral analysis solution owing to their low power consumption, high radiation tolerance, wide bandwidth, and high frequency resolution. However, in dual-channel CTS systems, discrepancies in chirp rate between channels lead to inconsistencies in frequency-to-time (F-T) mapping, which significantly degrade frequency resolution and spectral accuracy. A cooperative chirp-rate matching strategy is presented for a 1 GHz dual-channel CTS system. Based on the proposed strategy, an optimized chirp-parameter selection scheme is developed to improve F-T mapping consistency and the performance of high-resolution spectral measurements. Experimental results demonstrate that the optimized system achieves a frequency resolution of 92.92 kHz with improved spectral performance.

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Publication Details

Journal
Instrumentation Science & Technology
Published
2026-09-19
DOI
https://doi.org/10.1080/10739149.2026.2723224
Primary Topic
Acoustic Wave Resonator Technologies
Type
article
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article

Dual-channel cooperative matching for chirp transform spectrometry

Yining Yin, Yuanyuan Hu, Lurui Xie, Baifan Hu et al.
Instrumentation Science & Technology
Acoustic Wave Resonator Technologies
article

Dual-channel cooperative matching for chirp transform spectrometry

Yining Yin, Yuanyuan Hu, Lurui Xie, Baifan Hu, Wen Wang, Mengwei Liu
article en

Abstract

In applications such as deep-space exp\loration and atmospheric remote sensing, chirp transform spectrometer (CTS) systems based on surface acoustic wave (SAW) dispersive delay lines have become a key spectral analysis solution owing to their low power consumption, high radiation tolerance, wide bandwidth, and high frequency resolution. However, in dual-channel CTS systems, discrepancies in chirp rate between channels lead to inconsistencies in frequency-to-time (F-T) mapping, which significantly degrade frequency resolution and spectral accuracy. A cooperative chirp-rate matching strategy is presented for a 1 GHz dual-channel CTS system. Based on the proposed strategy, an optimized chirp-parameter selection scheme is developed to improve F-T mapping consistency and the performance of high-resolution spectral measurements. Experimental results demonstrate that the optimized system achieves a frequency resolution of 92.92 kHz with improved spectral performance.

Instrumentation Science & Technology
Chinese Academy of Sciences (CN), Institute of Acoustics (CN), University of Chinese Academy of Sciences (CN)
Affordable and clean energy
Openalex Percentile: Top 20%
Acoustic Wave Resonator Technologies
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Dual-channel cooperative matching for chirp transform spectrometry — Yining Yin, Yuanyuan Hu, et al. · Instrumentation Science & Technology (2026) | TGRS Research Map | TGRS