Stefan Goor

Stefan Goor

About

Detail

VP of Engineering
County Dublin, Ireland

Timeline


work
Job
school
Education

Résumé


Jobs verified_user 0% verified
  • Plain Concepts
    VP of Engineering
    Plain Concepts
    Jan 2026 - Current (8 months)
  • Ardanis Technologies Limited
    Group CIO | Solution Architect
    Ardanis Technologies Limited
    Apr 2016 - May 2026 (10 years 2 months)
  • Altify The future of The TAS Group
    Principal Engineer
    Altify The future of The TAS Group
    May 2011 - Apr 2016 (5 years)
  • G
    Owner / Consultant
    Goor Limited
    Aug 2010 - Jan 2012 (1 year 6 months)
  • Standard Bank
    Asset Control Specialist
    Standard Bank
    Aug 2010 - Apr 2011 (9 months)
  • The TAS Group
    Senior Software Engineer
    The TAS Group
    Oct 2009 - Aug 2010 (11 months)
  • ViaPost
    Senior Software Developer
    ViaPost
    Feb 2009 - Sep 2009 (8 months)
  • N
    Asset Control Specialist
    Nexilis Consultancy Ltd
    Jul 2007 - Feb 2009 (1 year 8 months)
    Consultant specialising in Asset Control configuration, development, maintenance and best practice.
  • Accenture
    Consultant
    Accenture
    Jan 2004 - Jan 2007 (3 years 1 month)
Education verified_user 0% verified
  • Dublin Business School
    Post Graduate Diploma, Management Studies
    Dublin Business School
    Jan 2010
  • University College Dublin
    Research MSc, Computer Science: Low Bitrate Video over Mobile Networks
    University College Dublin
    Jan 2002 - Jan 2004 (2 years 1 month)
  • University College Dublin
    BSc (Hons, Computer Science
    University College Dublin
    Jan 1998 - Jan 2002 (4 years 1 month)
Publications verified_user 0% verified
  • I
    Performance comparison of multiplexing techniques for MPEG-4 object-based content
    IEEE International Workshop on Multimedia Systems and Networking Arizona Apr
    A study of the performance of a number of different multiplexing schemes was conducted in the context of streaming of MPEG-4 object-based content, with particular emphasis on streaming content to mobile devices. The comparison involved six different schemes. The schemes differed in terms of how they packed the data for each arbitrarily shaped video object into packets. An experimental testbed was constructed to compare the performance of the different schemes. The experiments showed that the scheme in which no effort is made to maximise the amount of data in the packet performs worse than the others in terms of the amount of overhead it generates and the video quality obtained when it is used to stream content. The other schemes did exhibit
  • P
    Experimental Performance Analysis of RTPBased Transmission Techniques for MPEG-4
    Proc th International Packet Video Workshop Dec
    The performance of different approaches to streaming MPEG-4 video over RTP was investigated. Three specific approaches were compared: first, no multiplexing is used and only a single video data unit i.e. a coded video frame or a coded video frame segment, is transmitted per packet; in the second many video data units are multiplexed into a single RTP packet. The third approach is similar to the multiplexed case, but the units are interleaved across RTP packets. An experimental test bed was developed to determine the performance of the schemes under various emulated network conditions. The streaming approaches were analysed in terms of transmission performance and streamed video quality. The performance of the two multiplexed approaches was
This is a community-created genome.