The Experts below are selected from a list of 9159 Experts worldwide ranked by ideXlab platform

Gabor Karsai - One of the best experts on this subject based on the ideXlab platform.

  • Resilient Information Architecture Platform for the Smart Grid: A Novel Open-Source Platform for Microgrid Control
    IEEE Transactions on Industrial Electronics, 2020
    Co-Authors: Abhishek Dubey, Srdjan Lukic, Gabor Karsai
    Abstract:

    Microgrids are seen as an effective way to achieve reliable, resilient, and efficient operation of the power distribution System. Core functions of the Microgrid Control System are defined by the IEEE Standard 2030.7; however, the algorithms that realize these functions are not standardized, and are a topic of research. Furthermore, the corresponding Controller hardware, operating System, and communication System to implement these functions vary significantly from one implementation to the next. In this article, we introduce an open-source platform, resilient information architecture platform for the smart grid (RIAPS), ideally suited for implementing and deploying distributed Microgrid Control algorithms. RIAPS provides a design-time tool suite for development and deployment of distributed Microgrid Control algorithms. With support from a number of run-time platform services, developed algorithms can be easily implemented and deployed into real Microgrids. To demonstrate the unique features of RIAPS, we propose and implement a distributed Microgrid secondary Control algorithm capable of synchronized and proportional compensation of voltage unbalance using distributed generators. Test results show the effectiveness of the proposed Control and the salient features of the RIAPS platform.

  • resilient information architecture platform for the smart grid riaps a novel open source platform for Microgrid Control
    IEEE Transactions on Industrial Electronics, 2019
    Co-Authors: Hao Tu, Yuhua Du, Srdjan Lukic, Hui Yu, Abhishek Dubey, Gabor Karsai
    Abstract:

    Microgrids are seen as an effective way to achieve reliable, resilient, and efficient operation of the power distribution System. Core functions of the Microgrid Control System are defined by the IEEE standard 2030.7; however, the algorithms that realize these functions are not standardized, and are a topic of research. Furthermore, the corresponding Controller hardware, operating System, and communication System to implement these functions vary significantly from one implementation to the next. In this paper, we introduce an open-source platform, Resilient Information Architecture Platform for the Smart Grid (RIAPS), ideally suited for implementing and deploying distributed Microgrid Control algorithms. RIAPS provides a design-time tool suite for development and deployment of distributed Microgrid Control algorithms. With support from a number of run-time platform services, developed algorithms can be easily implemented and deployed into real Microgrids. To demonstrate the unique features of RIAPS, we propose and implement a distributed Microgrid secondary Control algorithm capable of synchronized and proportional compensation of voltage unbalance using distributed generators. Test results show the effectiveness of the proposed Control and the salient features of the RIAPS platform.

Abhishek Dubey - One of the best experts on this subject based on the ideXlab platform.

  • Resilient Information Architecture Platform for the Smart Grid: A Novel Open-Source Platform for Microgrid Control
    IEEE Transactions on Industrial Electronics, 2020
    Co-Authors: Abhishek Dubey, Srdjan Lukic, Gabor Karsai
    Abstract:

    Microgrids are seen as an effective way to achieve reliable, resilient, and efficient operation of the power distribution System. Core functions of the Microgrid Control System are defined by the IEEE Standard 2030.7; however, the algorithms that realize these functions are not standardized, and are a topic of research. Furthermore, the corresponding Controller hardware, operating System, and communication System to implement these functions vary significantly from one implementation to the next. In this article, we introduce an open-source platform, resilient information architecture platform for the smart grid (RIAPS), ideally suited for implementing and deploying distributed Microgrid Control algorithms. RIAPS provides a design-time tool suite for development and deployment of distributed Microgrid Control algorithms. With support from a number of run-time platform services, developed algorithms can be easily implemented and deployed into real Microgrids. To demonstrate the unique features of RIAPS, we propose and implement a distributed Microgrid secondary Control algorithm capable of synchronized and proportional compensation of voltage unbalance using distributed generators. Test results show the effectiveness of the proposed Control and the salient features of the RIAPS platform.

  • resilient information architecture platform for the smart grid riaps a novel open source platform for Microgrid Control
    IEEE Transactions on Industrial Electronics, 2019
    Co-Authors: Hao Tu, Yuhua Du, Srdjan Lukic, Hui Yu, Abhishek Dubey, Gabor Karsai
    Abstract:

    Microgrids are seen as an effective way to achieve reliable, resilient, and efficient operation of the power distribution System. Core functions of the Microgrid Control System are defined by the IEEE standard 2030.7; however, the algorithms that realize these functions are not standardized, and are a topic of research. Furthermore, the corresponding Controller hardware, operating System, and communication System to implement these functions vary significantly from one implementation to the next. In this paper, we introduce an open-source platform, Resilient Information Architecture Platform for the Smart Grid (RIAPS), ideally suited for implementing and deploying distributed Microgrid Control algorithms. RIAPS provides a design-time tool suite for development and deployment of distributed Microgrid Control algorithms. With support from a number of run-time platform services, developed algorithms can be easily implemented and deployed into real Microgrids. To demonstrate the unique features of RIAPS, we propose and implement a distributed Microgrid secondary Control algorithm capable of synchronized and proportional compensation of voltage unbalance using distributed generators. Test results show the effectiveness of the proposed Control and the salient features of the RIAPS platform.

Srdjan Lukic - One of the best experts on this subject based on the ideXlab platform.

  • Resilient Information Architecture Platform for the Smart Grid: A Novel Open-Source Platform for Microgrid Control
    IEEE Transactions on Industrial Electronics, 2020
    Co-Authors: Abhishek Dubey, Srdjan Lukic, Gabor Karsai
    Abstract:

    Microgrids are seen as an effective way to achieve reliable, resilient, and efficient operation of the power distribution System. Core functions of the Microgrid Control System are defined by the IEEE Standard 2030.7; however, the algorithms that realize these functions are not standardized, and are a topic of research. Furthermore, the corresponding Controller hardware, operating System, and communication System to implement these functions vary significantly from one implementation to the next. In this article, we introduce an open-source platform, resilient information architecture platform for the smart grid (RIAPS), ideally suited for implementing and deploying distributed Microgrid Control algorithms. RIAPS provides a design-time tool suite for development and deployment of distributed Microgrid Control algorithms. With support from a number of run-time platform services, developed algorithms can be easily implemented and deployed into real Microgrids. To demonstrate the unique features of RIAPS, we propose and implement a distributed Microgrid secondary Control algorithm capable of synchronized and proportional compensation of voltage unbalance using distributed generators. Test results show the effectiveness of the proposed Control and the salient features of the RIAPS platform.

  • resilient information architecture platform for the smart grid riaps a novel open source platform for Microgrid Control
    IEEE Transactions on Industrial Electronics, 2019
    Co-Authors: Hao Tu, Yuhua Du, Srdjan Lukic, Hui Yu, Abhishek Dubey, Gabor Karsai
    Abstract:

    Microgrids are seen as an effective way to achieve reliable, resilient, and efficient operation of the power distribution System. Core functions of the Microgrid Control System are defined by the IEEE standard 2030.7; however, the algorithms that realize these functions are not standardized, and are a topic of research. Furthermore, the corresponding Controller hardware, operating System, and communication System to implement these functions vary significantly from one implementation to the next. In this paper, we introduce an open-source platform, Resilient Information Architecture Platform for the Smart Grid (RIAPS), ideally suited for implementing and deploying distributed Microgrid Control algorithms. RIAPS provides a design-time tool suite for development and deployment of distributed Microgrid Control algorithms. With support from a number of run-time platform services, developed algorithms can be easily implemented and deployed into real Microgrids. To demonstrate the unique features of RIAPS, we propose and implement a distributed Microgrid secondary Control algorithm capable of synchronized and proportional compensation of voltage unbalance using distributed generators. Test results show the effectiveness of the proposed Control and the salient features of the RIAPS platform.

Hao Tu - One of the best experts on this subject based on the ideXlab platform.

  • resilient information architecture platform for the smart grid riaps a novel open source platform for Microgrid Control
    IEEE Transactions on Industrial Electronics, 2019
    Co-Authors: Hao Tu, Yuhua Du, Srdjan Lukic, Hui Yu, Abhishek Dubey, Gabor Karsai
    Abstract:

    Microgrids are seen as an effective way to achieve reliable, resilient, and efficient operation of the power distribution System. Core functions of the Microgrid Control System are defined by the IEEE standard 2030.7; however, the algorithms that realize these functions are not standardized, and are a topic of research. Furthermore, the corresponding Controller hardware, operating System, and communication System to implement these functions vary significantly from one implementation to the next. In this paper, we introduce an open-source platform, Resilient Information Architecture Platform for the Smart Grid (RIAPS), ideally suited for implementing and deploying distributed Microgrid Control algorithms. RIAPS provides a design-time tool suite for development and deployment of distributed Microgrid Control algorithms. With support from a number of run-time platform services, developed algorithms can be easily implemented and deployed into real Microgrids. To demonstrate the unique features of RIAPS, we propose and implement a distributed Microgrid secondary Control algorithm capable of synchronized and proportional compensation of voltage unbalance using distributed generators. Test results show the effectiveness of the proposed Control and the salient features of the RIAPS platform.

Hui Yu - One of the best experts on this subject based on the ideXlab platform.

  • resilient information architecture platform for the smart grid riaps a novel open source platform for Microgrid Control
    IEEE Transactions on Industrial Electronics, 2019
    Co-Authors: Hao Tu, Yuhua Du, Srdjan Lukic, Hui Yu, Abhishek Dubey, Gabor Karsai
    Abstract:

    Microgrids are seen as an effective way to achieve reliable, resilient, and efficient operation of the power distribution System. Core functions of the Microgrid Control System are defined by the IEEE standard 2030.7; however, the algorithms that realize these functions are not standardized, and are a topic of research. Furthermore, the corresponding Controller hardware, operating System, and communication System to implement these functions vary significantly from one implementation to the next. In this paper, we introduce an open-source platform, Resilient Information Architecture Platform for the Smart Grid (RIAPS), ideally suited for implementing and deploying distributed Microgrid Control algorithms. RIAPS provides a design-time tool suite for development and deployment of distributed Microgrid Control algorithms. With support from a number of run-time platform services, developed algorithms can be easily implemented and deployed into real Microgrids. To demonstrate the unique features of RIAPS, we propose and implement a distributed Microgrid secondary Control algorithm capable of synchronized and proportional compensation of voltage unbalance using distributed generators. Test results show the effectiveness of the proposed Control and the salient features of the RIAPS platform.