Mathematical models of the input signals in an adaptive telemetering system
Authors:
Vladov, Mihail; Canţer, Valeriu
Summary:
Some mathematical models of the input signals in an adaptive telemetring system are
developed for the purpose of the redundancy reduction of the measuring data or the “volume
information reduction”, i.e., for the construction of systems with data compression. In the
model, the signals from 250 airship telemetering elements, divided into six blocks, are processed following the signals activity. The application of the model for the measuring data flow
allowed increasing the number of measurement channels at the existing transmission capacity
of an optical channel (25Мbit\s) for the “Agat” series by a factor of 1.7-2.
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Crossref
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CERIF
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BibTeX
@article{ibn_4183,
author = {Vladov, M. and Canţer, V.G.},
title = {Mathematical models of the input signals in an adaptive telemetering system
},
journal = {Moldavian Journal of the Physical Sciences},
year = {2009},
volume = {8 (3-4)},
pages = {378-383},
month = {Sep},
abstract = {(EN) Some mathematical models of the input signals in an adaptive telemetring system are
developed for the purpose of the redundancy reduction of the measuring data or the “volume
information reduction”, i.e., for the construction of systems with data compression. In the
model, the signals from 250 airship telemetering elements, divided into six blocks, are processed following the signals activity. The application of the model for the measuring data flow
allowed increasing the number of measurement channels at the existing transmission capacity
of an optical channel (25Мbit\s) for the “Agat” series by a factor of 1.7-2.
},
url = {https://ibn.idsi.md/vizualizare_articol/4183},
}
DataCite
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Dublin Core
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