paper-with-me

홈 › Papers

Ultra-low-light computer vision using trained photon correlations

2026-04-13 · Mandar M. Sohoni, Jérémie Laydevant, Mathieu Ouellet, Shi-Yuan Ma, Ryotatsu Yanagimoto, Benjamin A. Ash, Tatsuhiro Onodera, Tianyu Wang, Logan G. Wright, Peter L. McMahon arxiv

Illumination using correlated photon sources has been established as an approach to allowing high-fidelity images to be reconstructed from noisy camera frames by taking advantage of the knowledge that signal photons are spatially correlated whereas detector clicks due to noise are uncorrelated. However, in computer-vision tasks, the goal is often not ultimately to reconstruct an image, but to make inferences about a scene -- such as what object is present. Here we show how correlated-photon illumination can be used to gain an advantage in a hybrid optical-electronic computer-vision pipeline for object recognition. We demonstrate correlation-aware training (CAT): end-to-end optimization of a trainable correlated-photon illumination source and a Transformer backend in a way that the Transformer can learn to benefit from the correlations, using a small number (<= 100) of shots. We show a classification accuracy enhancement of up to 15 percentage points over conventional, uncorrelated-illumination-based computer vision in ultra-low-light and noisy imaging conditions, as well as an improvement over using untrained correlated-photon illumination. Our work illustrates how specializing to a computer-vision task -- object recognition -- and training the pattern of photon correlations in conjunction with a digital backend allows us to push the limits of accuracy in highly photon-budget-constrained scenarios beyond existing methods focused on image reconstruction.

📄 PDF Abstract BibTeX arXiv:2604.11993

Code (0)

등록된 구현이 없습니다.

Tasks

Image ReconstructionObject Recognition

Similar Papers 제목 키워드 기반

Single-Photon 3D Imaging with Equi-Depth Photon Histograms

2024-08-28 · Kaustubh Sadekar, David Maier, Atul Ingle

Single-photon cameras present a promising avenue for high-resolution 3D imaging. They have ultra-high sensitivity -- down to individual photons -- and can record photon arrival times with extremely high (sub-nanosecond) …

Visual Odometry

Snapshot Compressed Imaging Based Single-Measurement Computer Vision for Videos

2025-01-25 · Fengpu Pan, Jiangtao Wen, Yuxing Han

Snapshot compressive imaging (SCI) is a promising technique for capturing high-speed video at low bandwidth and low power, typically by compressing multiple frames into a single measurement. However, similar to tradition…

compressed sensingDenoisingDepth EstimationEdge Detection

Ultrafast single-channel machine vision based on neuro-inspired photonic computing

2023-02-15 · Tomoya Yamaguchi, Kohei Arai, Tomoaki Niiyama, Atsushi Uchida 외

High-speed machine vision is increasing its importance in both scientific and technological applications. Neuro-inspired photonic computing is a promising approach to speed-up machine vision processing with ultralow late…

Anomaly Detection

Eulerian Single-Photon Vision

2023-01-01 · ICCV 2023 1 · Shantanu Gupta, Mohit Gupta

Single-photon sensors measure light signals at the finest possible resolution -- individual photons. These sensors introduce two major challenges in the form of strong Poisson noise and extremely large data acquisiti…

Edge DetectionImage ReconstructionMotion Estimation

Are Brain-Computer Interfaces Feasible with Integrated Photonic Chips?

2021-11-22 · Vahid Salari, Serafim Rodrigues, Erhan Saglamyurek, Christoph Simon 외

The present paper examines the viability of a radically novel idea for brain-computer interface (BCI), which could lead to novel technological, experimental and clinical applications. BCIs are computer-based systems that…

Brain Computer InterfaceEEGElectroencephalogram (EEG)