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SBIR Phase I: Novel photographic steganography to reduce digital piracy on live streaming platforms

Project: Research

Abstract & Details

Description

Award ID: 2014776

The broader impact of this Small Business Innovation Research (SBIR) Phase I project will be to detect screen-to-camera video piracy, through first-in-kind development of a robust video piracy detection method that uniquely applies camera-display messaging to copyright protection, while maintaining network quality standards. Existing watermarking solutions cannot reliably handle video-in-video piracy, where users upload pirated media captured using a smartphone camera; either they fail to detect video piracy or exhibit injurious hypersensitivity. The proposed solution balances these two concerns by embedding unique and unextractable watermarks into video content, thereby improving the ability for platforms to accurately match uploaded content with messages in the copyright-protected database. The resulting technology will allow for the detection of copyright information in camera-captured images and video, so that distributors can automatically filter against the illegal sharing of copyright-protected material, dramatically reducing liabilityand costly copyright infringement finesfor social media companies. This Small Business Innovation Research (SBIR) Phase I project seeks to develop an innovative camera-display message system that uses photographic steganography to embed covert messages in displayed video, addressing the need to detect screen-to-camera video piracy. Although photographic steganography has been applied to still images, video message embedding is complicated by the presence of perceptible artifacts that degrade visual quality. This project proposes to use novel spatio-temporal embedding that adapts to video content to reduce visual artifacts and support message recovery. This method circumvents the artifact-based constraints of traditional grid systems and will support the standard viewing quality. The following Phase I objectives will establish technical and commercial feasibility: 1) develop a video compression model that can handle multiple compression variations; 2) develop an optimal adaptive spatio-temporal embedding approach that reduces observed visual artifacts while maintaining a high accuracy rate; 3) design and implement a paired comparison protocol perceptual metric to evaluate video quality after message embedding; 4) develop a real-time robust screen detection and segmentation algorithm. This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.

NSF Program Director: Peter Atherton
StatusClosed
Effective start/end date07/01/2012/31/21

Funding

  • SBIR Phase I: $225,000.00

Active Fiscal Year

  • FY2022

Start Fiscal Year

  • FY2020

TIP Programs

  • SBIR Phase I

Small Business

  • Yes

Key Technology Areas

  • Data and Cybersecurity
  • (confidence score: 100%)
  • Advanced Computing and Semiconductors
  • (confidence score: 97%)

Technology Foci

  • Bio-metrics
  • (confidence score: 88%)
  • Cyber-security
  • (confidence score: 98%)
  • Advanced Computing and Semiconductors (Broad)
  • (confidence score: 100%)

Congressional District at Award

  • District n. 47 of California

Current Congressional District

  • District n. 47 of California

United States

  • California

Core Based Statistical Area (CBSA)

  • Los Angeles-Long Beach-Anaheim, CA

County

  • County: Orange, CA

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