The Experts below are selected from a list of 70671 Experts worldwide ranked by ideXlab platform
Sarina Rachinger - One of the best experts on this subject based on the ideXlab platform.
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comprehensive computer program for ssti analysis of ac dc Power Systems based on the Component connection method
International Journal of Electrical Power & Energy Systems, 2019Co-Authors: Robert Dimitrovski, Gert Mehlmann, Matthias Luther, Mario Ndreko, Wilhelm Winter, Kai Trunk, Sarina RachingerAbstract:Abstract This paper presents a comprehensive methodology for the investigation of SSTI in AC/DC transmission networks. The main advantage of the proposed methodology is the modular modeling approach, where various complex Components can be modeled in a comprehensive way while at the same time preserving the level of detail needed to capture the relevant dynamics. This is done by enhancing the CCM with an algorithm for the formulation of network state equations. All Power System Component models necessary for SSTI analysis are developed separately using the CCM principles and are connected according to their topological relations. A small-signal model of a point-to-point MMC-based VSC HVDC is developed to assess its influence on SSTI. The proposed methodology together with the developed models are implemented in a software framework called SNAP. The proposed methodology and the developed models are validated against time-domain simulations in PSS®NETOMAC.
Rick Kuffel - One of the best experts on this subject based on the ideXlab platform.
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a fully digital Power System simulator operating in real time
Canadian Conference on Electrical and Computer Engineering, 1996Co-Authors: Rick Kuffel, R.p. Wierckx, Jared Giesbrecht, T Maguire, P MclarenAbstract:This paper presents details of the design and applications of a real-time digital simulator, RTDS/sup TM/, applied to the modelling of Power System transients. This paper outlines the hardware and software design aspects of the RTDS. The hardware architecture is based on parallel processing techniques and employs many high-speed digital signal processors. Sophisticated graphical interface software facilitates circuit assembly and simulator operation. Detailed Power System Component models together with flexible analogue and digital I/O enable detailed testing of Power Systems and external devices connected to such Systems. The RTDS can be applied in various areas of Power System study. Specific applications which have been identified include closed-loop protective relay testing, control equipment testing, analogue simulator expansion and operation as a Power System training tool.
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rtds a fully digital Power System simulator operating in real time
ICDS '95. First International Conference on Digital Power System Simulators, 1995Co-Authors: Rick Kuffel, R.p. Wierckx, Jared Giesbrecht, T Maguire, P G MclarenAbstract:Abstruct - This paper presents details on the design, architectural features and applications of a real-time digital simulator (RTDSm) developed at the Manitoba HVDC Research Centre (Winnipeg, Canada). Custom hardware and software have been developed and collectively applied to the simulation and study of electromagnetic transients phenomenon in Power Systems in real-time. The combination of real-time operation, flexible YO, graphical user interface and an extensive library of accurate Power System Component models make the RTDS an ideal simulation tool with a wide range of applications. I. INTRODUCTION Simulation has long been recognized as an important and necessary step in the development, design and testing of Power generation and transmission Systems. A wide variety of both analogue and digital simulation tools are available and typically used during various stages of System development. Recent advances in both computing hardware and sophisticated Power System Component modelling techniques have significantly increased the application of digital simulation in the Power System industry. Of particular interest in the context of this paper are the advances made in the study of electromagnetic transients phenomenon.
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rtds a fully digital Power System simulator operating in real time
IEEE WESCANEX Communications Power and Computing, 1995Co-Authors: Rick Kuffel, R.p. Wierckx, Jared Giesbrecht, T Maguire, P G MclarenAbstract:This paper presents details on the design, architectural features and applications of a real-time digital simulator (RTDS) developed at the Manitoba HVDC Research Centre (Winnipeg, Canada). Custom hardware and software have been developed and collectively applied to the simulation and study of electromagnetic transients phenomenon in Power Systems in real-time. The combination of real-time operation, flexible I/O, graphical user interface and an extensive library of accurate Power System Component models make the RTDS an ideal simulation tool with a wide range of applications.
P G Mclaren - One of the best experts on this subject based on the ideXlab platform.
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rtds a fully digital Power System simulator operating in real time
ICDS '95. First International Conference on Digital Power System Simulators, 1995Co-Authors: Rick Kuffel, R.p. Wierckx, Jared Giesbrecht, T Maguire, P G MclarenAbstract:Abstruct - This paper presents details on the design, architectural features and applications of a real-time digital simulator (RTDSm) developed at the Manitoba HVDC Research Centre (Winnipeg, Canada). Custom hardware and software have been developed and collectively applied to the simulation and study of electromagnetic transients phenomenon in Power Systems in real-time. The combination of real-time operation, flexible YO, graphical user interface and an extensive library of accurate Power System Component models make the RTDS an ideal simulation tool with a wide range of applications. I. INTRODUCTION Simulation has long been recognized as an important and necessary step in the development, design and testing of Power generation and transmission Systems. A wide variety of both analogue and digital simulation tools are available and typically used during various stages of System development. Recent advances in both computing hardware and sophisticated Power System Component modelling techniques have significantly increased the application of digital simulation in the Power System industry. Of particular interest in the context of this paper are the advances made in the study of electromagnetic transients phenomenon.
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rtds a fully digital Power System simulator operating in real time
IEEE WESCANEX Communications Power and Computing, 1995Co-Authors: Rick Kuffel, R.p. Wierckx, Jared Giesbrecht, T Maguire, P G MclarenAbstract:This paper presents details on the design, architectural features and applications of a real-time digital simulator (RTDS) developed at the Manitoba HVDC Research Centre (Winnipeg, Canada). Custom hardware and software have been developed and collectively applied to the simulation and study of electromagnetic transients phenomenon in Power Systems in real-time. The combination of real-time operation, flexible I/O, graphical user interface and an extensive library of accurate Power System Component models make the RTDS an ideal simulation tool with a wide range of applications.
A Feliachi - One of the best experts on this subject based on the ideXlab platform.
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pat a Power analysis toolbox for matlab simulink
IEEE Transactions on Power Systems, 2002Co-Authors: Karl Schoder, A Hasanovic, A FeliachiAbstract:A Power System simulation environment in MATLAB/Simulink is presented in this paper. The developed Power analysis toolbox (PAT) is a very flexible and modular tool for load flow, transient, and small-signal analysis of electric Power Systems. Standard Power System Component models and a wide range of flexible AC transmission Systems (FACTS) devices are included. Its data structure and block library have been tested to confirm its applicability to small-to-medium-sized Power Systems. Its advantages over an existing commercial package are given.
T Maguire - One of the best experts on this subject based on the ideXlab platform.
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a fully digital Power System simulator operating in real time
Canadian Conference on Electrical and Computer Engineering, 1996Co-Authors: Rick Kuffel, R.p. Wierckx, Jared Giesbrecht, T Maguire, P MclarenAbstract:This paper presents details of the design and applications of a real-time digital simulator, RTDS/sup TM/, applied to the modelling of Power System transients. This paper outlines the hardware and software design aspects of the RTDS. The hardware architecture is based on parallel processing techniques and employs many high-speed digital signal processors. Sophisticated graphical interface software facilitates circuit assembly and simulator operation. Detailed Power System Component models together with flexible analogue and digital I/O enable detailed testing of Power Systems and external devices connected to such Systems. The RTDS can be applied in various areas of Power System study. Specific applications which have been identified include closed-loop protective relay testing, control equipment testing, analogue simulator expansion and operation as a Power System training tool.
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rtds a fully digital Power System simulator operating in real time
ICDS '95. First International Conference on Digital Power System Simulators, 1995Co-Authors: Rick Kuffel, R.p. Wierckx, Jared Giesbrecht, T Maguire, P G MclarenAbstract:Abstruct - This paper presents details on the design, architectural features and applications of a real-time digital simulator (RTDSm) developed at the Manitoba HVDC Research Centre (Winnipeg, Canada). Custom hardware and software have been developed and collectively applied to the simulation and study of electromagnetic transients phenomenon in Power Systems in real-time. The combination of real-time operation, flexible YO, graphical user interface and an extensive library of accurate Power System Component models make the RTDS an ideal simulation tool with a wide range of applications. I. INTRODUCTION Simulation has long been recognized as an important and necessary step in the development, design and testing of Power generation and transmission Systems. A wide variety of both analogue and digital simulation tools are available and typically used during various stages of System development. Recent advances in both computing hardware and sophisticated Power System Component modelling techniques have significantly increased the application of digital simulation in the Power System industry. Of particular interest in the context of this paper are the advances made in the study of electromagnetic transients phenomenon.
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rtds a fully digital Power System simulator operating in real time
IEEE WESCANEX Communications Power and Computing, 1995Co-Authors: Rick Kuffel, R.p. Wierckx, Jared Giesbrecht, T Maguire, P G MclarenAbstract:This paper presents details on the design, architectural features and applications of a real-time digital simulator (RTDS) developed at the Manitoba HVDC Research Centre (Winnipeg, Canada). Custom hardware and software have been developed and collectively applied to the simulation and study of electromagnetic transients phenomenon in Power Systems in real-time. The combination of real-time operation, flexible I/O, graphical user interface and an extensive library of accurate Power System Component models make the RTDS an ideal simulation tool with a wide range of applications.