Power-Line Communication (PLC) systems represent a very interesting opportunity for introducing low-cost communication capabilities over already existing power-line wires. In this paper we introduce a PLC technique that can be applied to systems with a DC power bus that employ a switching power converter as main power supply unit. The proposed technique is extremely simple to be implemented, and requires only minor modifications on the main switching converter. As a proof of this, we are capable to implement the proposed PLC in a system composed by commercial DC-DC converter boards without any circuital modification to the boards themselves. Measurements on this test system show the capability to communicate up to about 80 kbit/s with a bit error rate so low as 10^-5.

Ripple-based power-line communication in switching DC-DC converters exploiting switching frequency modulation / Bertoni, Nicola; Bocchi, Stefano; Mangia, Mauro; Pareschi, Fabio; Rovatti, Riccardo; Setti, Gianluca. - STAMPA. - (2015), pp. 209-212. (Intervento presentato al convegno IEEE International Symposium on Circuits and Systems, ISCAS 2015; tenutosi a Lisbon; Portugal nel 24 May 2015 through 27 May 2015) [10.1109/ISCAS.2015.7168607].

Ripple-based power-line communication in switching DC-DC converters exploiting switching frequency modulation

Pareschi Fabio;Setti Gianluca
2015

Abstract

Power-Line Communication (PLC) systems represent a very interesting opportunity for introducing low-cost communication capabilities over already existing power-line wires. In this paper we introduce a PLC technique that can be applied to systems with a DC power bus that employ a switching power converter as main power supply unit. The proposed technique is extremely simple to be implemented, and requires only minor modifications on the main switching converter. As a proof of this, we are capable to implement the proposed PLC in a system composed by commercial DC-DC converter boards without any circuital modification to the boards themselves. Measurements on this test system show the capability to communicate up to about 80 kbit/s with a bit error rate so low as 10^-5.
2015
978-1-4799-8391-9
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2696819