Coded time of flight cameras

Author:

Kadambi Achuta1,Whyte Refael2,Bhandari Ayush1,Streeter Lee3,Barsi Christopher1,Dorrington Adrian3,Raskar Ramesh1

Affiliation:

1. Massachusetts Institute of Technology, Boston

2. University of Waikato, Waikato, NZ and Massachusetts Institute of Technology, Boston

3. University of Waikato, Waikato, NZ

Abstract

Time of flight cameras produce real-time range maps at a relatively low cost using continuous wave amplitude modulation and demodulation. However, they are geared to measure range (or phase) for a single reflected bounce of light and suffer from systematic errors due to multipath interference. We re-purpose the conventional time of flight device for a new goal: to recover per-pixel sparse time profiles expressed as a sequence of impulses. With this modification, we show that we can not only address multipath interference but also enable new applications such as recovering depth of near-transparent surfaces, looking through diffusers and creating time-profile movies of sweeping light. Our key idea is to formulate the forward amplitude modulated light propagation as a convolution with custom codes, record samples by introducing a simple sequence of electronic time delays, and perform sparse deconvolution to recover sequences of Diracs that correspond to multipath returns. Applications to computer vision include ranging of near-transparent objects and subsurface imaging through diffusers. Our low cost prototype may lead to new insights regarding forward and inverse problems in light transport.

Funder

Alfred P. Sloan Foundation

Defense Advanced Research Projects Agency

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design

Reference31 articles.

1. Method and system to avoid inter-system interference for phase-based time-of-flight systems, July 29;Bamji C.;US Patent,2008

2. Multifrequency time of flight in the context of transient renderings

3. On the Uniqueness of Nonnegative Sparse Solutions to Underdetermined Systems of Equations

4. Robust optical time-of-flight range imaging based on smart pixel structures. Circuits and Systems I: Regular Papers;Buttgen B.;IEEE Transactions on,2008

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