The paper presents a novel technique for an accurate identification of the inverter nonlinear effects, such as the dead-time and on-state voltage drops. The proposed technique is very simple and it is based only on a current control scheme. If the inverter load is an AC motor, the inverter effects can be identified at drive startup using as measured quantities the motor currents and the inverter DC link voltage. The identified inverter error is stored in a Look-Up Table (LUT) that can be subsequently used by the vector control algorithm. The proposed method has been tested on a 1 kVA inverter prototype and the obtained results demonstrate the feasibility of the proposed solution.

Self-Commissioning of Inverter Nonlinear Effects in AC Drives / Bojoi, IUSTIN RADU; Armando, Eric Giacomo; Pellegrino, GIAN - MARIO LUIGI; S. G., Rosu. - STAMPA. - (2012), pp. 1-6. (Intervento presentato al convegno Energy Conference and Exhibition (ENERGYCON), 2012 IEEE International tenutosi a Firenze nel 10 - 12 settembre 2012) [10.1109/EnergyCon.2012.6347755].

Self-Commissioning of Inverter Nonlinear Effects in AC Drives

BOJOI, IUSTIN RADU;ARMANDO, Eric Giacomo;PELLEGRINO, GIAN - MARIO LUIGI;
2012

Abstract

The paper presents a novel technique for an accurate identification of the inverter nonlinear effects, such as the dead-time and on-state voltage drops. The proposed technique is very simple and it is based only on a current control scheme. If the inverter load is an AC motor, the inverter effects can be identified at drive startup using as measured quantities the motor currents and the inverter DC link voltage. The identified inverter error is stored in a Look-Up Table (LUT) that can be subsequently used by the vector control algorithm. The proposed method has been tested on a 1 kVA inverter prototype and the obtained results demonstrate the feasibility of the proposed solution.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2503193
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