Data di Pubblicazione:
2013
Citazione:
Detection Method of the DC bias in Distribution Power Transformers / G., Buticchi; Lorenzani, Emilio. - In: IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS. - ISSN 0278-0046. - STAMPA. - 60:8(2013), pp. 3539-3549. [10.1109/TIE.2012.2226418]
Abstract:
Non-linear loads such as AC drives switch-mode
power supplies and grid-connected converters can cause, besides
the generation of unwanted current harmonics, a DC current
component injection into the grid. This DC current component
can lead to magnetic saturation of the distribution power transformers, leading to higher current distortion and overheating.
This paper presents a method to detect the DC current
component flowing into the distribution power transformer with
a precise measurement of the DC voltage component at the
transformer winding. A magnetic sensor has been developed and
implemented in a closed-loop control system to achieve a high
sensitivity and guarantees a good linearity with a high rejection
ratio to grid voltage variations. Simulation and experimental
results confirm the effectiveness of the proposed approach.
power supplies and grid-connected converters can cause, besides
the generation of unwanted current harmonics, a DC current
component injection into the grid. This DC current component
can lead to magnetic saturation of the distribution power transformers, leading to higher current distortion and overheating.
This paper presents a method to detect the DC current
component flowing into the distribution power transformer with
a precise measurement of the DC voltage component at the
transformer winding. A magnetic sensor has been developed and
implemented in a closed-loop control system to achieve a high
sensitivity and guarantees a good linearity with a high rejection
ratio to grid voltage variations. Simulation and experimental
results confirm the effectiveness of the proposed approach.
Tipologia CRIS:
Articolo su rivista
Keywords:
Nonlinear magnetics; nonlinear systems; power
transformers; grid connected converters; distributed power; power conversion; voltage measurement; power system measurements; active filters.
Elenco autori:
G., Buticchi; Lorenzani, Emilio
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