2013
DOI: 10.1049/iet-pel.2012.0579
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Design of backstepping control for high‐performance inverter with stand‐alone and grid‐connected power‐supply modes

Abstract: In this study, the backstepping control (BSC) design for a high-performance inverter with the functions of stand-alone and grid-connected power supply is developed so that distributed generation units can operate individually or in a micro-grid mode. In the stand-alone power-supply mode, the output ac voltage can supply to ac loads. In the grid-connected powersupply mode, the goal of power management can be achieved by controlling the amplitude and direction of the output current in the inverter. As a result, … Show more

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Cited by 62 publications
(39 citation statements)
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“…10-13 illustrate the resulting controller performances. It can be seen that the control performance deterioration is small compared to the 50% decrease in load resistance in 10 16 2, 0003 × 10 16 1, 4 × 10 13 10 9 5 × 10 4 out 6, 54 × 10 9 5, 58 × 10 8 10 9 3 × 10 6 3 × 10 3 uncertainty. In particular, Fig.13 shows that the DC link voltage regulation is recovered after a short transient period following the load change.…”
Section: B Control Performance In Presence Of Load Changesmentioning
confidence: 96%
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“…10-13 illustrate the resulting controller performances. It can be seen that the control performance deterioration is small compared to the 50% decrease in load resistance in 10 16 2, 0003 × 10 16 1, 4 × 10 13 10 9 5 × 10 4 out 6, 54 × 10 9 5, 58 × 10 8 10 9 3 × 10 6 3 × 10 3 uncertainty. In particular, Fig.13 shows that the DC link voltage regulation is recovered after a short transient period following the load change.…”
Section: B Control Performance In Presence Of Load Changesmentioning
confidence: 96%
“…[14]. iv The nonlinearity of the controlled system is accounted for in the controller design and analysis, whereas it is partly or totally ignored in previous controllers [15,16]. v Owing to its adaptive nature, the present controller is able to meet its control objectives despite the uncertainty that prevails on some parameters (grid impedance, UPS load), unlike in some previous works where all system parameters are supposed to be perfectly known [1][2][3][4][5][6].…”
Section: Introductionmentioning
confidence: 99%
“…Yet, obtaining the control law requires a much greater computational effort . A backstepping control is used to benefit the stabilization of nonlinear terms in system dynamics . Nevertheless, it is characterized by the poor quality of the system output .…”
Section: Introductionmentioning
confidence: 99%
“…Hence, a large number of nonlinear control methods are introduced to solve problems of the nonlinearity and uncertainty of power converters [15][16][17][18][19][20][21]. As a kind approach of nonlinear control, the backstepping which is widely used in grid-connected system is considered to deal with the nonlinearity and uncertainty [20][21][22]. In [23], the backstepping controller is designed in the PV power supply system of telecommunication equipment.…”
Section: Introductionmentioning
confidence: 99%