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Stability-constrained optimal power flow
DOI:10.1109/59.867137.png)
Abstract
En 中文
Stability is an important constraint in power system operation. Often trial and error heuristics are used that can be costly and imprecise. A new methodology that eliminates the need for repeated simulation to determine a transiently secure operating point is presented. The theoretical development is straightf-forward: dynamic equations are converted to numerically equivalent algebraic equations and then integrated into the standard OFF formulation. Implementation issues and simulation results are discussed in the context of a 162-bus system.
Keywords:
power system
transient stability
optimal power flow
numerical computation
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Journal
IF:
7.2
Papers:
1.1W
Citations:
5.0W
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Cited Papers
DIRECT STABILITY ANALYSIS OF ELECTRIC-POWER SYSTEMS USING ENERGY FUNCTIONS - THEORY, APPLICATIONS, AND PERSPECTIVE
PROCEEDINGS OF THE IEEE
IF25.9
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Genome
IF0

