Single view reflectance capture using multiplexed scattering and time-of-flight imaging

Author:

Naik Nikhil1,Zhao Shuang2,Velten Andreas1,Raskar Ramesh1,Bala Kavita2

Affiliation:

1. MIT Media Lab

2. Cornell University

Abstract

This paper introduces the concept of time-of-flight reflectance estimation, and demonstrates a new technique that allows a camera to rapidly acquire reflectance properties of objects from a single view-point, over relatively long distances and without encircling equipment. We measure material properties by indirectly illuminating an object by a laser source, and observing its reflected light indirectly using a time-of-flight camera. The configuration collectively acquires dense angular, but low spatial sampling, within a limited solid angle range - all from a single viewpoint. Our ultra-fast imaging approach captures space-time "streak images" that can separate out different bounces of light based on path length. Entanglements arise in the streak images mixing signals from multiple paths if they have the same total path length. We show how reflectances can be recovered by solving for a linear system of equations and assuming parametric material models; fitting to lower dimensional reflectance models enables us to disentangle measurements. We demonstrate proof-of-concept results of parametric reflectance models for homogeneous and discretized heterogeneous patches, both using simulation and experimental hardware. As compared to lengthy or highly calibrated BRDF acquisition techniques, we demonstrate a device that can rapidly, on the order of seconds, capture meaningful reflectance information. We expect hardware advances to improve the portability and speed of this device.

Funder

Division of Computing and Communication Foundations

Division of Information and Intelligent Systems

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design

Reference46 articles.

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2. Cornell 2001. Reflectance data. www.graphics.cornell.edu/online/measurements/reflectance. Cornell 2001. Reflectance data. www.graphics.cornell.edu/online/measurements/reflectance.

3. Reflectance and texture of real-world surfaces

4. Asynchronous laser transponders for precise interplanetary ranging and time transfer

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