The Experts below are selected from a list of 1905 Experts worldwide ranked by ideXlab platform

J Acero - One of the best experts on this subject based on the ideXlab platform.

  • series resonant multiinverter with Discontinuous Mode control for improved light load Operation
    IEEE Transactions on Industrial Electronics, 2011
    Co-Authors: Oscar Lucia, J M Burdio, L A Barragan, C Carretero, J Acero
    Abstract:

    Operation under light-load conditions is a general issue when developing power converters as it can lead to system instability and/or decreased performance. This topic is particularly important for resonant converters as their efficiency significantly reduces when their Operation point is set outside their resonant conditions. Considering the importance of efficiency for power converter reliability, environmental impacts, and regulation concerns, a major effort to improve the Operation under light-load conditions is justified. Domestic induction heating is an application where variable loads and output power requirements imply Operation under a wide range of conditions, including long-term light-load Operation. The aim of this paper is to propose an improved control scheme for series resonant multiinverters, which are a cost-effective topology for supplying multiple inductive loads, based on Discontinuous-Mode Operation. Two different control strategies are proposed: regenerative control and direct conduction control. An analytical study is performed, and the main simulation results are presented. An experimental series resonant multiinverter prototype is used to validate the simulation results.

  • Series resonant multi-inverter with Discontinuous-Mode control for improved light-load Operation
    IECON 2010 - 36th Annual Conference on IEEE Industrial Electronics Society, 2010
    Co-Authors: Oscar Lucia, J M Burdio, L A Barragan, J Acero, C Carretero
    Abstract:

    Operation under light-load conditions is a general issue when developing power converters, as it can lead to system instability and/or decreased performance. This topic is especially important for resonant converters, as the efficiency significantly degrades when the Operation point is set out of the resonant conditions. Considering the importance of efficiency for the power converter reliability, the environmental impact, and the regulation concerns, a major effort to improve the Operation under light-load conditions is justified. Domestic induction heating is an application example where the variable load and the output power requirements imply the Operation under a wide range of conditions, including long-term light-load Operation. The aim of this paper is to propose an improved control scheme for the series resonant multi-inverter, a cost-effective topology to supply multiple inductive loads, based on the Discontinuous-Mode Operation. Two different control strategies are proposed: regenerative control (RC) and direct conduction control (DCC). An analytical study is performed and the main simulation results are presented. Besides, an experimental series resonant multi-inverter prototype is used to validate the simulation results.

Oscar Lucia - One of the best experts on this subject based on the ideXlab platform.

  • series resonant multiinverter with Discontinuous Mode control for improved light load Operation
    IEEE Transactions on Industrial Electronics, 2011
    Co-Authors: Oscar Lucia, J M Burdio, L A Barragan, C Carretero, J Acero
    Abstract:

    Operation under light-load conditions is a general issue when developing power converters as it can lead to system instability and/or decreased performance. This topic is particularly important for resonant converters as their efficiency significantly reduces when their Operation point is set outside their resonant conditions. Considering the importance of efficiency for power converter reliability, environmental impacts, and regulation concerns, a major effort to improve the Operation under light-load conditions is justified. Domestic induction heating is an application where variable loads and output power requirements imply Operation under a wide range of conditions, including long-term light-load Operation. The aim of this paper is to propose an improved control scheme for series resonant multiinverters, which are a cost-effective topology for supplying multiple inductive loads, based on Discontinuous-Mode Operation. Two different control strategies are proposed: regenerative control and direct conduction control. An analytical study is performed, and the main simulation results are presented. An experimental series resonant multiinverter prototype is used to validate the simulation results.

  • Series resonant multi-inverter with Discontinuous-Mode control for improved light-load Operation
    IECON 2010 - 36th Annual Conference on IEEE Industrial Electronics Society, 2010
    Co-Authors: Oscar Lucia, J M Burdio, L A Barragan, J Acero, C Carretero
    Abstract:

    Operation under light-load conditions is a general issue when developing power converters, as it can lead to system instability and/or decreased performance. This topic is especially important for resonant converters, as the efficiency significantly degrades when the Operation point is set out of the resonant conditions. Considering the importance of efficiency for the power converter reliability, the environmental impact, and the regulation concerns, a major effort to improve the Operation under light-load conditions is justified. Domestic induction heating is an application example where the variable load and the output power requirements imply the Operation under a wide range of conditions, including long-term light-load Operation. The aim of this paper is to propose an improved control scheme for the series resonant multi-inverter, a cost-effective topology to supply multiple inductive loads, based on the Discontinuous-Mode Operation. Two different control strategies are proposed: regenerative control (RC) and direct conduction control (DCC). An analytical study is performed and the main simulation results are presented. Besides, an experimental series resonant multi-inverter prototype is used to validate the simulation results.

C Carretero - One of the best experts on this subject based on the ideXlab platform.

  • series resonant multiinverter with Discontinuous Mode control for improved light load Operation
    IEEE Transactions on Industrial Electronics, 2011
    Co-Authors: Oscar Lucia, J M Burdio, L A Barragan, C Carretero, J Acero
    Abstract:

    Operation under light-load conditions is a general issue when developing power converters as it can lead to system instability and/or decreased performance. This topic is particularly important for resonant converters as their efficiency significantly reduces when their Operation point is set outside their resonant conditions. Considering the importance of efficiency for power converter reliability, environmental impacts, and regulation concerns, a major effort to improve the Operation under light-load conditions is justified. Domestic induction heating is an application where variable loads and output power requirements imply Operation under a wide range of conditions, including long-term light-load Operation. The aim of this paper is to propose an improved control scheme for series resonant multiinverters, which are a cost-effective topology for supplying multiple inductive loads, based on Discontinuous-Mode Operation. Two different control strategies are proposed: regenerative control and direct conduction control. An analytical study is performed, and the main simulation results are presented. An experimental series resonant multiinverter prototype is used to validate the simulation results.

  • Series resonant multi-inverter with Discontinuous-Mode control for improved light-load Operation
    IECON 2010 - 36th Annual Conference on IEEE Industrial Electronics Society, 2010
    Co-Authors: Oscar Lucia, J M Burdio, L A Barragan, J Acero, C Carretero
    Abstract:

    Operation under light-load conditions is a general issue when developing power converters, as it can lead to system instability and/or decreased performance. This topic is especially important for resonant converters, as the efficiency significantly degrades when the Operation point is set out of the resonant conditions. Considering the importance of efficiency for the power converter reliability, the environmental impact, and the regulation concerns, a major effort to improve the Operation under light-load conditions is justified. Domestic induction heating is an application example where the variable load and the output power requirements imply the Operation under a wide range of conditions, including long-term light-load Operation. The aim of this paper is to propose an improved control scheme for the series resonant multi-inverter, a cost-effective topology to supply multiple inductive loads, based on the Discontinuous-Mode Operation. Two different control strategies are proposed: regenerative control (RC) and direct conduction control (DCC). An analytical study is performed and the main simulation results are presented. Besides, an experimental series resonant multi-inverter prototype is used to validate the simulation results.

J M Burdio - One of the best experts on this subject based on the ideXlab platform.

  • series resonant multiinverter with Discontinuous Mode control for improved light load Operation
    IEEE Transactions on Industrial Electronics, 2011
    Co-Authors: Oscar Lucia, J M Burdio, L A Barragan, C Carretero, J Acero
    Abstract:

    Operation under light-load conditions is a general issue when developing power converters as it can lead to system instability and/or decreased performance. This topic is particularly important for resonant converters as their efficiency significantly reduces when their Operation point is set outside their resonant conditions. Considering the importance of efficiency for power converter reliability, environmental impacts, and regulation concerns, a major effort to improve the Operation under light-load conditions is justified. Domestic induction heating is an application where variable loads and output power requirements imply Operation under a wide range of conditions, including long-term light-load Operation. The aim of this paper is to propose an improved control scheme for series resonant multiinverters, which are a cost-effective topology for supplying multiple inductive loads, based on Discontinuous-Mode Operation. Two different control strategies are proposed: regenerative control and direct conduction control. An analytical study is performed, and the main simulation results are presented. An experimental series resonant multiinverter prototype is used to validate the simulation results.

  • Series resonant multi-inverter with Discontinuous-Mode control for improved light-load Operation
    IECON 2010 - 36th Annual Conference on IEEE Industrial Electronics Society, 2010
    Co-Authors: Oscar Lucia, J M Burdio, L A Barragan, J Acero, C Carretero
    Abstract:

    Operation under light-load conditions is a general issue when developing power converters, as it can lead to system instability and/or decreased performance. This topic is especially important for resonant converters, as the efficiency significantly degrades when the Operation point is set out of the resonant conditions. Considering the importance of efficiency for the power converter reliability, the environmental impact, and the regulation concerns, a major effort to improve the Operation under light-load conditions is justified. Domestic induction heating is an application example where the variable load and the output power requirements imply the Operation under a wide range of conditions, including long-term light-load Operation. The aim of this paper is to propose an improved control scheme for the series resonant multi-inverter, a cost-effective topology to supply multiple inductive loads, based on the Discontinuous-Mode Operation. Two different control strategies are proposed: regenerative control (RC) and direct conduction control (DCC). An analytical study is performed and the main simulation results are presented. Besides, an experimental series resonant multi-inverter prototype is used to validate the simulation results.

L A Barragan - One of the best experts on this subject based on the ideXlab platform.

  • series resonant multiinverter with Discontinuous Mode control for improved light load Operation
    IEEE Transactions on Industrial Electronics, 2011
    Co-Authors: Oscar Lucia, J M Burdio, L A Barragan, C Carretero, J Acero
    Abstract:

    Operation under light-load conditions is a general issue when developing power converters as it can lead to system instability and/or decreased performance. This topic is particularly important for resonant converters as their efficiency significantly reduces when their Operation point is set outside their resonant conditions. Considering the importance of efficiency for power converter reliability, environmental impacts, and regulation concerns, a major effort to improve the Operation under light-load conditions is justified. Domestic induction heating is an application where variable loads and output power requirements imply Operation under a wide range of conditions, including long-term light-load Operation. The aim of this paper is to propose an improved control scheme for series resonant multiinverters, which are a cost-effective topology for supplying multiple inductive loads, based on Discontinuous-Mode Operation. Two different control strategies are proposed: regenerative control and direct conduction control. An analytical study is performed, and the main simulation results are presented. An experimental series resonant multiinverter prototype is used to validate the simulation results.

  • Series resonant multi-inverter with Discontinuous-Mode control for improved light-load Operation
    IECON 2010 - 36th Annual Conference on IEEE Industrial Electronics Society, 2010
    Co-Authors: Oscar Lucia, J M Burdio, L A Barragan, J Acero, C Carretero
    Abstract:

    Operation under light-load conditions is a general issue when developing power converters, as it can lead to system instability and/or decreased performance. This topic is especially important for resonant converters, as the efficiency significantly degrades when the Operation point is set out of the resonant conditions. Considering the importance of efficiency for the power converter reliability, the environmental impact, and the regulation concerns, a major effort to improve the Operation under light-load conditions is justified. Domestic induction heating is an application example where the variable load and the output power requirements imply the Operation under a wide range of conditions, including long-term light-load Operation. The aim of this paper is to propose an improved control scheme for the series resonant multi-inverter, a cost-effective topology to supply multiple inductive loads, based on the Discontinuous-Mode Operation. Two different control strategies are proposed: regenerative control (RC) and direct conduction control (DCC). An analytical study is performed and the main simulation results are presented. Besides, an experimental series resonant multi-inverter prototype is used to validate the simulation results.