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April 19, 2026Sensors0 citationsOpen Access

Design and On-Orbit Validation of a Compact Wide-Swath Spaceborne SWIR Push-Broom Camera

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BCB. ChengYZYongqian ZhuQLQianmin Liu

Key Points

  • This work aims to develop and validate a compact imaging system for high-resolution short-wave infrared monitoring from space.
  • Designed a dual-channel push-broom imaging system with a transmissive optical architecture.
  • Mosaicked sixteen InGaAs linear array detectors to achieve a wide imaging swath.
  • Developed a closed-loop leveling method for focal plane consistency using modulation transfer function as a metric.
  • Conducted an on-orbit image quality assessment to evaluate system performance.
  • Achieved an imaging swath of approximately 187 km and a ground sampling distance of about 24 m.
  • Demonstrated a total instrument mass of 10.62 kg and power consumption of approximately 12 W.
  • FWHM of the line spread function was around 1.38 pixels with a favorable signal-to-noise ratio, indicating good image quality.

Abstract

To address the demand for wide-swath, high-resolution short-wave infrared (SWIR) imaging on resource-constrained spaceborne platforms, this study presents the design and on-orbit validation of a compact dual-channel push-broom (line-scanning) imaging system. The system adopts a transmissive optical architecture and a centralized, compact electronic control unit (ECU) configuration. By interleaving and mosaicking sixteen InGaAs linear array detectors, the system achieves an imaging swath of approximately 187 km and a nominal ground sampling distance of about 24 m, while maintaining a total instrument mass of 10.62 kg and a power consumption of approximately 12 W, thereby demonstrating a high level of integration and efficient resource utilization. To address focal plane consistency issues arising from multi-detector mosaicking, a closed-loop leveling method was developed using the modulation transfer function (MTF) as the primary performance metric. Through defocus estimation and quantitative correction of protrusions on a SiC substrate, convergence toward a unified confocal focal plane among multiple detectors was achieved. On-orbit image quality assessment indicates that the full width at half maximum (FWHM) of the line spread function (LSF) for both channels is approximately 1.38 pixels, with favorable signal-to-noise ratio (SNR) performance. These results validate the effectiveness of the proposed focal plane leveling strategy as well as the opto-mechanical-thermal design of the system. The proposed approach provides a practical pathway for the engineering implementation and consistency control of multi-detector mosaicked SWIR payloads under stringent resource constraints.

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Cite This Study

Cheng et al. (2026) studied this question.

synapsesocial.com/papers/69e471ef010ef96374d8e19chttps://doi.org/10.3390/s26082494
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