paper-with-me

홈 › Papers

Multilook Coherent Imaging: Theoretical Guarantees and Algorithms

2025-05-29 · Xi Chen, Soham Jana, Christopher A. Metzler, Arian Maleki, Shirin Jalali

Multilook coherent imaging is a widely used technique in applications such as digital holography, ultrasound imaging, and synthetic aperture radar. A central challenge in these systems is the presence of multiplicative noise, commonly known as speckle, which degrades image quality. Despite the widespread use of coherent imaging systems, their theoretical foundations remain relatively underexplored. In this paper, we study both the theoretical and algorithmic aspects of likelihood-based approaches for multilook coherent imaging, providing a rigorous framework for analysis and method development. Our theoretical contributions include establishing the first theoretical upper bound on the Mean Squared Error (MSE) of the maximum likelihood estimator under the deep image prior hypothesis. Our results capture the dependence of MSE on the number of parameters in the deep image prior, the number of looks, the signal dimension, and the number of measurements per look. On the algorithmic side, we employ projected gradient descent (PGD) as an efficient method for computing the maximum likelihood solution. Furthermore, we introduce two key ideas to enhance the practical performance of PGD. First, we incorporate the Newton-Schulz algorithm to compute matrix inverses within the PGD iterations, significantly reducing computational complexity. Second, we develop a bagging strategy to mitigate projection errors introduced during PGD updates. We demonstrate that combining these techniques with PGD yields state-of-the-art performance. Our code is available at https://github.com/Computational-Imaging-RU/Bagged-DIP-Speckle.

📄 PDF Abstract BibTeX arXiv:2505.23594

Code (1)

Computational-Imaging-RU/Bagged-DIP-Speckle 공식 구현 pytorch

Similar Papers 제목 키워드 기반

Compressed Sensing SAR Imaging with Multilook Processing

2013-10-27 · Jian Fang, Zongben Xu, Bingchen Zhang, Wen Hong 외

Multilook processing is a widely used speckle reduction approach in synthetic aperture radar (SAR) imaging. Conventionally, it is achieved by incoherently summing of some independent low-resolution images formulated from…

compressed sensingCompressive SensingImage Reconstruction

Deep Denoising Prior-Based Spectral Estimation for Phaseless Synthetic Aperture Radar

2023-06-29 · Samia Kazemi, Bariscan Yonel, Birsen Yazıcı

Incoherent processing for synthetic aperture radar (SAR) is a promising approach that enables low implementation costs, simplified hardware designs and operations in high frequency spectrum compared to the conventional i…

DenoisingRetrieval

Comparing Edge Detection Methods based on Stochastic Entropies and Distances for PolSAR Imagery

2013-06-09 · Abraão D. C. Nascimento, Michelle M. Horta, Alejandro C. Frery, Renato J. Cintra

Polarimetric synthetic aperture radar (PolSAR) has achieved a prominent position as a remote imaging method. However, PolSAR images are contaminated by speckle noise due to the coherent illumination employed during the d…

Edge Detection

Snapshot Compressive Imaging: Principle, Implementation, Theory, Algorithms and Applications

2021-03-07 · Xin Yuan, David J. Brady, Aggelos K. Katsaggelos

Capturing high-dimensional (HD) data is a long-term challenge in signal processing and related fields. Snapshot compressive imaging (SCI) uses a two-dimensional (2D) detector to capture HD ($\ge3$D) data in a {\em snapsh…

Restoration of Images with Wavefront Aberrations

2017-04-02 · Claudius Zelenka, Reinhard Koch

This contribution deals with image restoration in optical systems with coherent illumination, which is an important topic in astronomy, coherent microscopy and radar imaging. Such optical systems suffer from wavefront di…

AstronomyImage Restoration