The Experts below are selected from a list of 2253 Experts worldwide ranked by ideXlab platform

Marija Ilic - One of the best experts on this subject based on the ideXlab platform.

  • interactive object oriented simulation of interconnected power systems using simulink
    IEEE Transactions on Education, 2001
    Co-Authors: Eric Allen, N Lawhite, Y Yoon, J W Chapman, Marija Ilic
    Abstract:

    An object-oriented power system simulation environment is constructed using the SIMULINK dynamic system modeling software. The environment is well suited to educational purposes, because the user interface is interactive and intuitive with a graphical, object-oriented model representation. For small system studies, a model is constructed in Block Diagram Form with one Block for each system component. For large scale simulations, the dynamics of portions of the network can be combined into collective Blocks, with parameters managed as data arrays accessed indirectly using string mnemonics. The advanced numerical capabilities built into SIMULINK provide an excellent simulation engine for the nonlinear models. Offline analysis is available through the extensive capabilities of the MATLAB environment.

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

  • modelling and identification of nonlinear dynamic loads in power systems
    IEEE Transactions on Power Systems, 1994
    Co-Authors: D Karlsson, David J Hill
    Abstract:

    This paper describes an approach for experimental determination of aggregate dynamic loads in power systems. The work is motivated by the importance of accurate load modeling in voltage stability analysis. The models can be expressed in general as nonlinear differential equations or equivalently realised in Block Diagram Form as interconnections of nonlinear (memoryless) functions and linear dynamic Blocks. These components are parameterized by load indexes and time constants. Experimental results from tests in Southern Sweden on the identification of these parameters are described. >

Eric Allen - One of the best experts on this subject based on the ideXlab platform.

  • interactive object oriented simulation of interconnected power systems using simulink
    IEEE Transactions on Education, 2001
    Co-Authors: Eric Allen, N Lawhite, Y Yoon, J W Chapman, Marija Ilic
    Abstract:

    An object-oriented power system simulation environment is constructed using the SIMULINK dynamic system modeling software. The environment is well suited to educational purposes, because the user interface is interactive and intuitive with a graphical, object-oriented model representation. For small system studies, a model is constructed in Block Diagram Form with one Block for each system component. For large scale simulations, the dynamics of portions of the network can be combined into collective Blocks, with parameters managed as data arrays accessed indirectly using string mnemonics. The advanced numerical capabilities built into SIMULINK provide an excellent simulation engine for the nonlinear models. Offline analysis is available through the extensive capabilities of the MATLAB environment.

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

  • interactive object oriented simulation of interconnected power systems using simulink
    IEEE Transactions on Education, 2001
    Co-Authors: Eric Allen, N Lawhite, Y Yoon, J W Chapman, Marija Ilic
    Abstract:

    An object-oriented power system simulation environment is constructed using the SIMULINK dynamic system modeling software. The environment is well suited to educational purposes, because the user interface is interactive and intuitive with a graphical, object-oriented model representation. For small system studies, a model is constructed in Block Diagram Form with one Block for each system component. For large scale simulations, the dynamics of portions of the network can be combined into collective Blocks, with parameters managed as data arrays accessed indirectly using string mnemonics. The advanced numerical capabilities built into SIMULINK provide an excellent simulation engine for the nonlinear models. Offline analysis is available through the extensive capabilities of the MATLAB environment.

Y Yoon - One of the best experts on this subject based on the ideXlab platform.

  • interactive object oriented simulation of interconnected power systems using simulink
    IEEE Transactions on Education, 2001
    Co-Authors: Eric Allen, N Lawhite, Y Yoon, J W Chapman, Marija Ilic
    Abstract:

    An object-oriented power system simulation environment is constructed using the SIMULINK dynamic system modeling software. The environment is well suited to educational purposes, because the user interface is interactive and intuitive with a graphical, object-oriented model representation. For small system studies, a model is constructed in Block Diagram Form with one Block for each system component. For large scale simulations, the dynamics of portions of the network can be combined into collective Blocks, with parameters managed as data arrays accessed indirectly using string mnemonics. The advanced numerical capabilities built into SIMULINK provide an excellent simulation engine for the nonlinear models. Offline analysis is available through the extensive capabilities of the MATLAB environment.