Publication result detail

Real-time video stabilisation

DRAHANSKÝ, M.; ORSÁG, F.

Original Title

Real-time video stabilisation

English Title

Real-time video stabilisation

Type

Peer-reviewed article not indexed in WoS or Scopus

Original Abstract

This paper deals with image stabilisation for video-based tracking systems. An introduction to image stabilisation is stated. A short description of known algorithms for image stabilisation follows, including our solution based on these methods with some optimisations. At the end, we represent a suitable hardware platform, which we developed and constructed and uses Digital Signal Processor (DSP), Field Programmable Gate Array (FPGA) and Synchronous Dynamic Random Access Memory (SDRAM). This device is under testing now.

English abstract

This paper deals with image stabilisation for video-based tracking systems. An introduction to image stabilisation is stated. A short description of known algorithms for image stabilisation follows, including our solution based on these methods with some optimisations. At the end, we represent a suitable hardware platform, which we developed and constructed and uses Digital Signal Processor (DSP), Field Programmable Gate Array (FPGA) and Synchronous Dynamic Random Access Memory (SDRAM). This device is under testing now.

Keywords

image stabilisation; real-time video stabilisation; video stream; digital signal processing; DSP; field programmable gate arrays; FPGA; video-based tracking; synchronous dynamic RAM; random access memory; SDRAM.

Key words in English

image stabilisation; real-time video stabilisation; video stream; digital signal processing; DSP; field programmable gate arrays; FPGA; video-based tracking; synchronous dynamic RAM; random access memory; SDRAM.

Authors

DRAHANSKÝ, M.; ORSÁG, F.

RIV year

2010

Released

04.05.2009

Book

International Journal of Autonomic Computing

ISBN

1741-8569

Periodical

International Journal of Autonomic Computing

Volume

2009

Number

2

State

United Kingdom of Great Britain and Northern Ireland

Pages from

202

Pages to

210

Pages count

9

Full text in the Digital Library

BibTex

@article{BUT48021,
  author="Martin {Drahanský} and Filip {Orság}",
  title="Real-time video stabilisation",
  journal="International Journal of Autonomic Computing",
  year="2009",
  volume="2009",
  number="2",
  pages="202--210",
  issn="1741-8569"
}