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Three cases were established as: ① Establish a benchmark case from the perspective of power system planners.
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This "benchmark" case, from which the local elites have departed, is represented as a pooling equilibrium.
In addition, a new approach based on the Proper Orthogonal Decomposition (POD), to address this important problem is introduced and discussed with the aid of illustrative benchmark case studies from the literature.
The accuracy of the semi-analytical predictions is demonstrated by comparison with finite element results and benchmark cases taken from the literature.
The three techniques are compared using two case studies, one of which is a benchmark example from the nonlinear control literature.
The technique is also computationally tested on a benchmark case study throughout the whole work.
Finally, a new CFD case study is performed to confirm the shifting of an uncontrolled operational regime to a quasi-optimal one by changing Ri from 1.46 in the benchmark case to 0.6 in the new case.
The method is found to provide very good agreement with benchmark test cases from the literature.
Regarding the discount factor, starting from the benchmark case (r = 0.5 and therefore H = T 0.5) as we reduce the amount of discounting applied to past data (r increases), the degree of parameter instability declines but does not vanish.
The applicability of the MINLP model is illustrated through the resolution of a benchmark case study taken from literature and its computational performance is compared with a genetic algorithm-based approach.
Some benchmark cases demonstrate the efficacy of the proposed approaches.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com