The Experts below are selected from a list of 315 Experts worldwide ranked by ideXlab platform

Fabian R. Wirth - One of the best experts on this subject based on the ideXlab platform.

  • On Classical Control and smart cities
    2017 IEEE 56th Annual Conference on Decision and Control (CDC), 2017
    Co-Authors: Andre R. Fioravanti, Jakub Mareček, Robert N. Shorten, Matheus Souza, Fabian R. Wirth
    Abstract:

    We discuss the applicability of Classical Control theory to problems in smart grids and smart cities. We use tools from iterated function systems to identify Controllers with desirable properties. In particular, Controllers are identified that can be used to design not only stable closed-loop systems, but also to regulate large-scale populations of agents in a predictable manner. We also illustrate by means of an example and associated theory that many Classical Controllers are not suitable for deployment in these applications.

Andre R. Fioravanti - One of the best experts on this subject based on the ideXlab platform.

  • CDC - On Classical Control and smart cities
    2017 IEEE 56th Annual Conference on Decision and Control (CDC), 2017
    Co-Authors: Andre R. Fioravanti, Jakub Mareček, Robert N. Shorten, Matheus Souza, Fabian Wirth
    Abstract:

    We discuss the applicability of Classical Control theory to problems in smart grids and smart cities. We use tools from iterated function systems to identify Controllers with desirable properties. In particular, Controllers are identified that can be used to design not only stable closed-loop systems, but also to regulate large-scale populations of agents in a predictable manner. We also illustrate by means of an example and associated theory that many Classical Controllers are not suitable for deployment in these applications.

  • On Classical Control and smart cities
    2017 IEEE 56th Annual Conference on Decision and Control (CDC), 2017
    Co-Authors: Andre R. Fioravanti, Jakub Mareček, Robert N. Shorten, Matheus Souza, Fabian R. Wirth
    Abstract:

    We discuss the applicability of Classical Control theory to problems in smart grids and smart cities. We use tools from iterated function systems to identify Controllers with desirable properties. In particular, Controllers are identified that can be used to design not only stable closed-loop systems, but also to regulate large-scale populations of agents in a predictable manner. We also illustrate by means of an example and associated theory that many Classical Controllers are not suitable for deployment in these applications.

Wei-yen Wang - One of the best experts on this subject based on the ideXlab platform.

  • Fuzzy evaluation and expert system in Classical Control system design
    Proceedings of 1994 American Control Conference - ACC '94, 1994
    Co-Authors: Chi-hsu Wang, Wei-yen Wang
    Abstract:

    The purpose of this paper is to develop an expert system for Control system design (ESCSD), with a unique set of fuzzy evaluation rules. The authors' investigation not only uses expert systems for Control system design but also proposes a practical way to use a unique set of fuzzy evaluation rules to suggest a better design method for a given plant. A set of fuzzy evaluation rules extracted from four Classical design procedures is proposed. It focuses on how to predict the results of design methods. The authors deem the fuzzy evaluation rules are predicting tools of an expert system. It is also shown in this paper that the set of fuzzy evaluation rules has been successfully integrated with ESCSD. Several examples are illustrated which show the agreeable result obtained from ESCSD.

Matheus Souza - One of the best experts on this subject based on the ideXlab platform.

  • CDC - On Classical Control and smart cities
    2017 IEEE 56th Annual Conference on Decision and Control (CDC), 2017
    Co-Authors: Andre R. Fioravanti, Jakub Mareček, Robert N. Shorten, Matheus Souza, Fabian Wirth
    Abstract:

    We discuss the applicability of Classical Control theory to problems in smart grids and smart cities. We use tools from iterated function systems to identify Controllers with desirable properties. In particular, Controllers are identified that can be used to design not only stable closed-loop systems, but also to regulate large-scale populations of agents in a predictable manner. We also illustrate by means of an example and associated theory that many Classical Controllers are not suitable for deployment in these applications.

  • On Classical Control and smart cities
    2017 IEEE 56th Annual Conference on Decision and Control (CDC), 2017
    Co-Authors: Andre R. Fioravanti, Jakub Mareček, Robert N. Shorten, Matheus Souza, Fabian R. Wirth
    Abstract:

    We discuss the applicability of Classical Control theory to problems in smart grids and smart cities. We use tools from iterated function systems to identify Controllers with desirable properties. In particular, Controllers are identified that can be used to design not only stable closed-loop systems, but also to regulate large-scale populations of agents in a predictable manner. We also illustrate by means of an example and associated theory that many Classical Controllers are not suitable for deployment in these applications.

Robert N. Shorten - One of the best experts on this subject based on the ideXlab platform.

  • CDC - On Classical Control and smart cities
    2017 IEEE 56th Annual Conference on Decision and Control (CDC), 2017
    Co-Authors: Andre R. Fioravanti, Jakub Mareček, Robert N. Shorten, Matheus Souza, Fabian Wirth
    Abstract:

    We discuss the applicability of Classical Control theory to problems in smart grids and smart cities. We use tools from iterated function systems to identify Controllers with desirable properties. In particular, Controllers are identified that can be used to design not only stable closed-loop systems, but also to regulate large-scale populations of agents in a predictable manner. We also illustrate by means of an example and associated theory that many Classical Controllers are not suitable for deployment in these applications.

  • On Classical Control and smart cities
    2017 IEEE 56th Annual Conference on Decision and Control (CDC), 2017
    Co-Authors: Andre R. Fioravanti, Jakub Mareček, Robert N. Shorten, Matheus Souza, Fabian R. Wirth
    Abstract:

    We discuss the applicability of Classical Control theory to problems in smart grids and smart cities. We use tools from iterated function systems to identify Controllers with desirable properties. In particular, Controllers are identified that can be used to design not only stable closed-loop systems, but also to regulate large-scale populations of agents in a predictable manner. We also illustrate by means of an example and associated theory that many Classical Controllers are not suitable for deployment in these applications.