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◆ Optics express2026-07-27

Synthetic aperture imaging by distributed arrays of space telescopes.

Omri Wengrowicz, Or Peleg, Barry Loevsky, Oren Cohen

原始摘要(英文原文)· Original abstract
We present synthetic aperture imaging by distributed arrays of space telescopes (SAIDAST), a methodology for high-resolution space imaging using distributed arrays of small telescopes. SAIDAST reconstructs images from sparse, motion-blurred intensity measurements without requiring large monolithic apertures. We compare two implementations using numerical simulations: Mo-PIE (motion-aware ptychography) and a physics-informed neural network. The neural network demonstrates high reconstruction quality (SSIM up to 0.985 on a USAF 1951 resolution target and up to 0.85 on Europa JunoCam imagery), graceful degradation at negative SNRs under an intensity-dependent Gaussian shot-noise proxy with parity to the Mo-PIE baseline above 0 dB, and constant-memory sequential processing across 64-256 detectors on a single consumer-grade GPU. Simulations with 0.17 m apertures forming a 10 m synthetic array validate the approach: on the USAF 1951 target, SAIDAST reaches 87.7% of ground-truth normalized MTF-AUC versus under 1% for a single 17 cm aperture, enabled by the combination of expanded k-space coverage and physics-informed DIP reconstruction. A paired partial-coherence simulation (n = 4, Welch p = 0.025) indicates an approximately 24% SSIM degradation on Europa when the coherent forward-model approximation is relaxed. Based on SAIDAST, we propose that a distributed array of satellites can form a high-resolution telescope in the visible spectral region.
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Synthetic aperture imaging by distributed arrays of space telescopes. — 科研速览 Science Skim