arXiv:2506.08513physics.opticseess.IV2025-06被引 17

用信息量优化镜头缺失成像编码器,提升图像重建效果

Designing lensless imaging systems to maximize information capture

  • 基于互信息评估编码器性能,指导设计更优的光学掩膜
  • 最优编码器需根据物体稀疏性调整多路复用程度,提升信息捕获
  • 无需配合特定重建算法,适合固定对象分布的压缩成像

基于掩膜的镜头缺失成像利用光学编码器(如相位或振幅掩膜)采集测量数据,再通过计算解码算法重建图像。本文通过互信息估计评估并设计镜头缺失编码器,以最大化测量中的信息含量。该方法形式化了镜头缺失成像的对象依赖性,量化了物体稀疏性、编码器多路复用与噪声之间的相互关系。分析表明,最优编码器设计应根据物体稀疏性调节多路复用程度,以实现最大信息捕获;且所有最优编码测量具有相同的稀疏水平。通过互信息优化,我们为固定物体分布的压缩成像设计了信息最优编码器,在不联合优化特定重建算法的前提下,显著提升了下游重建性能。实验上,我们直接从捕获测量中验证了系统性能,无需图像形成模型、重建算法或真实图像数据。本研究建立了镜头缺失成像系统的设计与工程原则,并为具有对象依赖性能的一般多路复用系统提供了研究范式。

原文摘要 · Abstract (English)

Mask-based lensless imaging uses an optical encoder (e.g. a phase or amplitude mask) to capture measurements, then a computational decoding algorithm to reconstruct images. In this work, we evaluate and design lensless encoders based on the information content of their measurements using mutual information estimation. Our approach formalizes the object-dependent nature of lensless imaging and quantifies the interdependence between object sparsity, encoder multiplexing, and noise. Our analysis reveals that optimal encoder designs should tailor encoder multiplexing to object sparsity for maximum information capture, and that all optimally-encoded measurements share the same level of sparsity. Using mutual information-based optimization, we design information-optimal encoders for compressive imaging of fixed object distributions. Our designs demonstrate improved downstream reconstruction performance for objects in the distribution, without requiring joint optimization with a specific reconstruction algorithm. We validate our approach experimentally by evaluating lensless imaging systems directly from captured measurements, without the need for image formation models, reconstruction algorithms, or ground truth data. Our comprehensive analysis establishes design and engineering principles for lensless imaging systems, and offers a model for the study of general multiplexing systems, especially those with object-dependent performance.

镜头缺失成像信息优化编码器设计互信息

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