| Abstract
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<p>Modern surveillance systems, such … <p>Modern surveillance systems, such as those based on the use of Unmanned Aerial Vehicles, require powerful high- performance platforms to deal with many different algorithms that make use of massive calculations. At the same time, low- cost and high-performance specific hardware (e.g., GPU, PPU) are rising and the CPUs turned to multiple cores, characteriz- ing together an interesting and powerful heterogeneous execu- tion platform. Therefore, reconfigurable computing is a poten- tial paradigm for those scenarios as it can provide flexibility to explore the computational resources on heterogeneous cluster attached to a high-performance computer system platform. As the first step towards a run-time reconfigurable workload bal- ancing framework targeting that kind of platform, application time requirements and its crosscutting behavior play an impor- tant role for task allocation decisions. This paper presents a strategy to reallocate specific tasks in a surveillance system composed by a fleet of Unmanned Aerial Vehicles using aspect- oriented paradigms in order to address non-functional applica- tion timing constraints in the design phase. An aspect support from a framework called DERAF is used to support reconfigu- ration requirements and provide the resource information needed by the reconfigurable load-balancing strategy. Finally, for the case study, a special attention on Radar Image Process- ing will be given.</p>mage Process- ing will be given.</p>
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| Author
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A.P.D. Binotto +
, Edison Pignaton de Freitas +
, Carlos Eduardo Pereira +
, André Stork +
, Tony Larsson +
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| Conference
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International Workshop on Real Time Software (RTS'08), Wisla, Poland, Oct. 20-22, 2008. Part of the International Multiconference on Computer Science and Information Technology.
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| DOI
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http://dx.doi.org/10.1109/IMCSIT.2008.4747302 +
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| Diva
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http://hh.diva-portal.org/smash/record.jsf?searchId=1&pid=diva2:239362
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| EndPage
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588 +
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| HostPublication
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2008 International Multiconference on Computer Science and Information Technology (Imcsit) +
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| PublicationType
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Conference Paper +
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| Publisher
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IEEE Press +
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| StartPage
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581 +
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| Title
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Real-time task reconfiguration support applied to an UAV-based surveillance system +
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| Year
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2008 +
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| Has queryThis property is a special property in this wiki.
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Publications:Real-time task reconfiguration support applied to an UAV-based surveillance system +
, Publications:Real-time task reconfiguration support applied to an UAV-based surveillance system +
, Publications:Real-time task reconfiguration support applied to an UAV-based surveillance system +
, Publications:Real-time task reconfiguration support applied to an UAV-based surveillance system +
, Publications:Real-time task reconfiguration support applied to an UAV-based surveillance system +
, Publications:Real-time task reconfiguration support applied to an UAV-based surveillance system +
, Publications:Real-time task reconfiguration support applied to an UAV-based surveillance system +
, Publications:Real-time task reconfiguration support applied to an UAV-based surveillance system +
, Publications:Real-time task reconfiguration support applied to an UAV-based surveillance system +
, Publications:Real-time task reconfiguration support applied to an UAV-based surveillance system +
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| Categories |
Publication +
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| Modification dateThis property is a special property in this wiki.
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26 June 2014 03:43:52 +
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