This report describes a load model, generation system, and transmission network which can be used to test or compare methods for reliability analysis of power systems. The objective is to define a system sufficiently broad to provide a basis for reporting on analysis methods for combined generation/transmission (composite) reliability.
IEEE Transactions on Power Apparatus and Systems Template
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About the IEEE Transactions on Power Apparatus and Systems format
IEEE Transactions on Power Apparatus and Systems is a peer-reviewed journal published by IEEE, covering High voltage insulation and dielectric phenomena, Thermal Analysis in Power Transmission, Lightning and Electromagnetic Phenomena.
| Publisher | IEEE |
|---|---|
| Reference style | Numbered (IEEE) Numbered — [1], [2] in the text [1] A. Smith, B. Jones, and C. Lee, "A representative article title," IEEE Transactions on Power Apparatus and Systems, vol. 12, no. 3, pp. 45–58, 2023.
Formats any DOI in IEEE Transactions on Power Apparatus and Systems style. No sign-up. |
| Publishes research in | High voltage insulation and dielectric phenomena Thermal Analysis in Power Transmission Lightning and Electromagnetic Phenomena Power System Optimization and Stability Power Systems Fault Detection |
| ISSN | 0018-9510 |
| h-index | 163 |
| i10-index | 3,560 |
| Total citations | 198,282 |
| Top institutions publishing here | General Electric (United States) |
| You get | A submission-ready PDF and the editable LaTeX source — ready to submit. |
Papers published in IEEE Transactions on Power Apparatus and Systems per year
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Most-cited papers in IEEE Transactions on Power Apparatus and Systems
The phenomena of stability of synchronous machines under small perturbations is explored by examining the case of a single machine connected to an infinite bus through external reactance.
Electromagnetic transients in arbitrary single- or multiphase networks are solved by a nodal admittance matrix method. The formulation is based on the method of characteristics for distributed parameters and the trapezoidal rule of integration for lumped parameters. Optimally ordered triangular factorization with sparsity techniques is used in the solution. Examples and programming details illustrate the…
A practical method is given for solving the power flow problem with control variables such as real and reactive power and transformer ratios automatically adjusted to minimize instantaneous costs or losses. The solution is feasible with respect to constraints on control variables and dependent variables such as load voltages, reactive sources, and tie line power…
The Dommel-Tinney approach to the calculation of optimal power-system load flows has proved to be very powerful and general. This paper extends the problem formulation and solution scheme by incorporating exact outage-contingency constraints into the method, to give an optimal steady-state-secure system operating point. The controllable system quantities in the base-case problem (e.g. generated MW,…