The Experts below are selected from a list of 22512 Experts worldwide ranked by ideXlab platform

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

  • development of a distributive control scheme for fluorescent lighting based on lonworks technology
    IEEE Transactions on Industrial Electronics, 2000
    Co-Authors: J M Alonso, J Ribas, A J Calleja, E L Corominas, M Ricosecades
    Abstract:

    In this paper, a new distributive control system for indoor fluorescent lighting based on LonWorks technology is presented. The system features the following elements: microprocessor-controlled fluorescent lamp electronic ballast, communication system using the Power line as communication media, and control software for Windows 95 environment. The electronic ballast has been especially designed to be operated under the proposed distributive control system. Thus, it features high-Input Power Factor, high-frequency lamp supply, lamp Power regulation against line voltage variations, dimming capability, and lamp failure detection. With this scheme, a low-cost distributive control system for lighting applications has been achieved, allowing energy and maintenance savings and increase in the reliability of the fluorescent lighting systems.

  • analysis and experimental results of a single stage high Power Factor electronic ballast based on flyback converter
    IEEE Transactions on Power Electronics, 1999
    Co-Authors: A J Calleja, J M Alonso, J Ribas, E Lopez, J A Martinez, M Ricosecades
    Abstract:

    A new single-stage high-Power-Factor electronic ballast based on a flyback converter is presented in this paper. The ballast is able to supply a fluorescent lamp assuring a high-Input Power Factor for the utility line. Other features are lamp Power regulation against line voltage variations and low lamp current crest Factor, both assuring long lamp life. The ballast is analyzed at steady-state operation, and design equations and characteristics are obtained. Also, a procedure for the ballast design is presented. Finally, simulation and experimental results from a laboratory prototype are shown.

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

  • development of a distributive control scheme for fluorescent lighting based on lonworks technology
    IEEE Transactions on Industrial Electronics, 2000
    Co-Authors: J M Alonso, J Ribas, A J Calleja, E L Corominas, M Ricosecades
    Abstract:

    In this paper, a new distributive control system for indoor fluorescent lighting based on LonWorks technology is presented. The system features the following elements: microprocessor-controlled fluorescent lamp electronic ballast, communication system using the Power line as communication media, and control software for Windows 95 environment. The electronic ballast has been especially designed to be operated under the proposed distributive control system. Thus, it features high-Input Power Factor, high-frequency lamp supply, lamp Power regulation against line voltage variations, dimming capability, and lamp failure detection. With this scheme, a low-cost distributive control system for lighting applications has been achieved, allowing energy and maintenance savings and increase in the reliability of the fluorescent lighting systems.

  • analysis and experimental results of a single stage high Power Factor electronic ballast based on flyback converter
    IEEE Transactions on Power Electronics, 1999
    Co-Authors: A J Calleja, J M Alonso, J Ribas, E Lopez, J A Martinez, M Ricosecades
    Abstract:

    A new single-stage high-Power-Factor electronic ballast based on a flyback converter is presented in this paper. The ballast is able to supply a fluorescent lamp assuring a high-Input Power Factor for the utility line. Other features are lamp Power regulation against line voltage variations and low lamp current crest Factor, both assuring long lamp life. The ballast is analyzed at steady-state operation, and design equations and characteristics are obtained. Also, a procedure for the ballast design is presented. Finally, simulation and experimental results from a laboratory prototype are shown.

  • analysis and experimental results of a single stage high Power Factor electronic ballast based on flyback converter
    Applied Power Electronics Conference, 1998
    Co-Authors: J M Alonso, J Ribas, A J Calleja, E Lopez, R J Ferrero, M Rico
    Abstract:

    A new single-stage high-Power-Factor electronic ballast based on a flyback Power converter is presented in this paper. The ballast is able to supply a fluorescent lamp, assuring a high Input Power Factor for the utility line. Other features are lamp Power regulation against line voltage variations and low lamp current crest Factor, both assuring long lamp life. The ballast is analyzed at steady-state operation and design equations and characteristics are obtained. Also, a procedure for the ballast design is presented. Finally, simulation and experimental results from a laboratory prototype are shown.

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

  • development of a distributive control scheme for fluorescent lighting based on lonworks technology
    IEEE Transactions on Industrial Electronics, 2000
    Co-Authors: J M Alonso, J Ribas, A J Calleja, E L Corominas, M Ricosecades
    Abstract:

    In this paper, a new distributive control system for indoor fluorescent lighting based on LonWorks technology is presented. The system features the following elements: microprocessor-controlled fluorescent lamp electronic ballast, communication system using the Power line as communication media, and control software for Windows 95 environment. The electronic ballast has been especially designed to be operated under the proposed distributive control system. Thus, it features high-Input Power Factor, high-frequency lamp supply, lamp Power regulation against line voltage variations, dimming capability, and lamp failure detection. With this scheme, a low-cost distributive control system for lighting applications has been achieved, allowing energy and maintenance savings and increase in the reliability of the fluorescent lighting systems.

  • analysis and experimental results of a single stage high Power Factor electronic ballast based on flyback converter
    IEEE Transactions on Power Electronics, 1999
    Co-Authors: A J Calleja, J M Alonso, J Ribas, E Lopez, J A Martinez, M Ricosecades
    Abstract:

    A new single-stage high-Power-Factor electronic ballast based on a flyback converter is presented in this paper. The ballast is able to supply a fluorescent lamp assuring a high-Input Power Factor for the utility line. Other features are lamp Power regulation against line voltage variations and low lamp current crest Factor, both assuring long lamp life. The ballast is analyzed at steady-state operation, and design equations and characteristics are obtained. Also, a procedure for the ballast design is presented. Finally, simulation and experimental results from a laboratory prototype are shown.

  • analysis and experimental results of a single stage high Power Factor electronic ballast based on flyback converter
    Applied Power Electronics Conference, 1998
    Co-Authors: J M Alonso, J Ribas, A J Calleja, E Lopez, R J Ferrero, M Rico
    Abstract:

    A new single-stage high-Power-Factor electronic ballast based on a flyback Power converter is presented in this paper. The ballast is able to supply a fluorescent lamp, assuring a high Input Power Factor for the utility line. Other features are lamp Power regulation against line voltage variations and low lamp current crest Factor, both assuring long lamp life. The ballast is analyzed at steady-state operation and design equations and characteristics are obtained. Also, a procedure for the ballast design is presented. Finally, simulation and experimental results from a laboratory prototype are shown.

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

  • development of a distributive control scheme for fluorescent lighting based on lonworks technology
    IEEE Transactions on Industrial Electronics, 2000
    Co-Authors: J M Alonso, J Ribas, A J Calleja, E L Corominas, M Ricosecades
    Abstract:

    In this paper, a new distributive control system for indoor fluorescent lighting based on LonWorks technology is presented. The system features the following elements: microprocessor-controlled fluorescent lamp electronic ballast, communication system using the Power line as communication media, and control software for Windows 95 environment. The electronic ballast has been especially designed to be operated under the proposed distributive control system. Thus, it features high-Input Power Factor, high-frequency lamp supply, lamp Power regulation against line voltage variations, dimming capability, and lamp failure detection. With this scheme, a low-cost distributive control system for lighting applications has been achieved, allowing energy and maintenance savings and increase in the reliability of the fluorescent lighting systems.

  • analysis and experimental results of a single stage high Power Factor electronic ballast based on flyback converter
    IEEE Transactions on Power Electronics, 1999
    Co-Authors: A J Calleja, J M Alonso, J Ribas, E Lopez, J A Martinez, M Ricosecades
    Abstract:

    A new single-stage high-Power-Factor electronic ballast based on a flyback converter is presented in this paper. The ballast is able to supply a fluorescent lamp assuring a high-Input Power Factor for the utility line. Other features are lamp Power regulation against line voltage variations and low lamp current crest Factor, both assuring long lamp life. The ballast is analyzed at steady-state operation, and design equations and characteristics are obtained. Also, a procedure for the ballast design is presented. Finally, simulation and experimental results from a laboratory prototype are shown.

  • analysis and experimental results of a single stage high Power Factor electronic ballast based on flyback converter
    Applied Power Electronics Conference, 1998
    Co-Authors: J M Alonso, J Ribas, A J Calleja, E Lopez, R J Ferrero, M Rico
    Abstract:

    A new single-stage high-Power-Factor electronic ballast based on a flyback Power converter is presented in this paper. The ballast is able to supply a fluorescent lamp, assuring a high Input Power Factor for the utility line. Other features are lamp Power regulation against line voltage variations and low lamp current crest Factor, both assuring long lamp life. The ballast is analyzed at steady-state operation and design equations and characteristics are obtained. Also, a procedure for the ballast design is presented. Finally, simulation and experimental results from a laboratory prototype are shown.

Prasad N. Enjeti - One of the best experts on this subject based on the ideXlab platform.