2021
DOI: 10.1109/oajpe.2021.3093278
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Smart Sampling for Reduced and Representative Power System Scenario Selection

Abstract: With increasing penetration of renewable energy and active market participation, power system operation scenarios and patterns have increased exponentially. This has led to challenges in identifying a good subset of scenarios for routine planning, operation, and emerging machine learning applications. To address these challenges, we develop an approach integrating comprehensive exploratory data analyses and smart sampling techniques to identify and select a small subset of representative power system scenarios… Show more

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Cited by 10 publications
(1 citation statement)
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“…Var planning schemes formulated in [11] and [12] mainly targeted at large‐scale wind farms and considered aged equipment retirement, uncertainties of wind farms and loads, respectively. The optimization objective of the model established in [13] was to increase the voltage stability of the system in different scenarios, thus determining the optimal location of dynamic reactive power resources. Reference [14] proposed a configuration method of dynamic reactive power equipment based on system controllability and could maximize the rapid voltage support of the system.…”
Section: Introductionmentioning
confidence: 99%
“…Var planning schemes formulated in [11] and [12] mainly targeted at large‐scale wind farms and considered aged equipment retirement, uncertainties of wind farms and loads, respectively. The optimization objective of the model established in [13] was to increase the voltage stability of the system in different scenarios, thus determining the optimal location of dynamic reactive power resources. Reference [14] proposed a configuration method of dynamic reactive power equipment based on system controllability and could maximize the rapid voltage support of the system.…”
Section: Introductionmentioning
confidence: 99%