http://www.cnr.it/ontology/cnr/individuo/prodotto/ID188167
Oil-Filled MV/LV Power-Transformer Behavior in Narrow-Band Power-Line Communication Systems (Articolo in rivista)
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- Oil-Filled MV/LV Power-Transformer Behavior in Narrow-Band Power-Line Communication Systems (Articolo in rivista) (literal)
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- 2012-01-01T00:00:00+01:00 (literal)
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#doi
- 10.1109/TIM.2012.2209911 (literal)
- Alternative label
A. Cataliotti; V. Cosentino; D. Di Cara; G. Tinè (2012)
Oil-Filled MV/LV Power-Transformer Behavior in Narrow-Band Power-Line Communication Systems
in IEEE transactions on instrumentation and measurement; IEEE - Institute of Electrical and Electronics Engineers, Piscataway, N.J. (Stati Uniti d'America)
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- A. Cataliotti; V. Cosentino; D. Di Cara; G. Tinè (literal)
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- Titolo
- Oil-Filled MV/LV Power-Transformer Behavior in Narrow-Band Power-Line Communication Systems (literal)
- Abstract
- The aim of this paper is to characterize oil-filled
power transformers in the narrow-band power-line communication
(PLC) frequency range of 50-150 kHz. A new model is
proposed for such type of a transformer, in the aforementioned
frequency range of interest, in order to study its influence on the
signal transmission and to investigate the possibility that the PLC
signal can cross the power transformer itself. The new model is
simpler than those previously proposed in literature, and it can be
used in the whole frequency range available for NB PLC according
to the CENELEC EN 50065-1 A-band. In order to validate the
model, simulation and measurement results are compared for four
oil-filled power transformers with different rated power values.
A complete PLC system in the case of a medium-voltage (MV)
power network is also simulated, in order to perform a preliminary
evaluation of the influence of power transformers on the
communication system. The MV overhead power line, the oil-filled
power transformers, the MV signal coupling network, and two
ST7540 frequency shift keying (FSK) power-line transceivers are
included in the simulated system. The performances of the complete
PLC communication system are evaluated in the case of both
MV to low voltage (LV) and LV toMV transmissions. The analysis
is carried out by evaluating the signal attenuation, which is computed
as the ratio between the received and transmitted voltage
signals, in the case of different line lengths and carrier frequency
values. (literal)
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