Showing 61 - 80 results of 111 for search '(( final phase model optimization algorithm ) OR ( binary three process optimization algorithm ))', query time: 0.56s Refine Results
  1. 61

    Confusion matrix of proposed RVCNet. by Fatema Binte Alam (17708708)

    Published 2023
    “…Finally, these results are compared with some recent deep-learning models. …”
  2. 62

    Results of multiple runs for RVCNet. by Fatema Binte Alam (17708708)

    Published 2023
    “…Finally, these results are compared with some recent deep-learning models. …”
  3. 63

    Basic methodology of the overall system. by Fatema Binte Alam (17708708)

    Published 2023
    “…Finally, these results are compared with some recent deep-learning models. …”
  4. 64

    DataSheet1_A two-phase robust comprehensive optimal scheduling strategy for regional distribution network based on multiple scenarios.ZIP by Hongde Ma (20137539)

    Published 2024
    “…Furthermore, a novel two-phase decomposition model based on the box decomposition algorithm will be introduced to handle the temporal dependencies between energy storage and unit commitment, optimizing both operational costs and system flexibility. …”
  5. 65
  6. 66
  7. 67
  8. 68

    Design and implementation of the Multiple Criteria Decision Making (MCDM) algorithm for predicting the severity of COVID-19. by Jiaqing Luo (10975030)

    Published 2021
    “…<p>(A). The MCDM algorithm-Stage 1. Preprocessing, this stage is the process of refining the collected raw data to eliminate noise, including correlation analysis and feature selection based on P values. …”
  9. 69

    Natural language processing for automated quantification of bone metastases reported in free-text bone scintigraphy reports by Olivier Q. Groot (9370461)

    Published 2020
    “…The aim of this study was to develop a natural language processing (NLP) algorithm for binary classification (single metastasis versus two or more metastases) in bone scintigraphy reports of patients undergoing surgery for bone metastases.…”
  10. 70
  11. 71

    Incremental Inverse Design of Desired Soybean Phenotypes by Joseph Zavorskas (19761296)

    Published 2024
    “…A random forest (RF) is used to model the genotype-to-phenotype relationship, and a genetic algorithm is used to query the RF until a feasible genotype with desired phenotype is discovered. …”
  12. 72

    DeepSCN structure. by Naiwei Tu (22177688)

    Published 2025
    “…The lower considers the economic effect of the loss during repair and determines the optimal fault repair sequence. Furthermore, an enhanced Nutcracker Optimization algorithm to solve the bilayer model was proposed, determining the dynamic combination of the fault reconfiguration scheme and the repair sequence. …”
  13. 73

    pone.0331390.t010 - by Naiwei Tu (22177688)

    Published 2025
    “…The lower considers the economic effect of the loss during repair and determines the optimal fault repair sequence. Furthermore, an enhanced Nutcracker Optimization algorithm to solve the bilayer model was proposed, determining the dynamic combination of the fault reconfiguration scheme and the repair sequence. …”
  14. 74

    Fault point details. by Naiwei Tu (22177688)

    Published 2025
    “…The lower considers the economic effect of the loss during repair and determines the optimal fault repair sequence. Furthermore, an enhanced Nutcracker Optimization algorithm to solve the bilayer model was proposed, determining the dynamic combination of the fault reconfiguration scheme and the repair sequence. …”
  15. 75

    Wind turbine parameters. by Naiwei Tu (22177688)

    Published 2025
    “…The lower considers the economic effect of the loss during repair and determines the optimal fault repair sequence. Furthermore, an enhanced Nutcracker Optimization algorithm to solve the bilayer model was proposed, determining the dynamic combination of the fault reconfiguration scheme and the repair sequence. …”
  16. 76

    Comparison of results from multiple runs. by Naiwei Tu (22177688)

    Published 2025
    “…The lower considers the economic effect of the loss during repair and determines the optimal fault repair sequence. Furthermore, an enhanced Nutcracker Optimization algorithm to solve the bilayer model was proposed, determining the dynamic combination of the fault reconfiguration scheme and the repair sequence. …”
  17. 77

    Photovoltaic cell parameters. by Naiwei Tu (22177688)

    Published 2025
    “…The lower considers the economic effect of the loss during repair and determines the optimal fault repair sequence. Furthermore, an enhanced Nutcracker Optimization algorithm to solve the bilayer model was proposed, determining the dynamic combination of the fault reconfiguration scheme and the repair sequence. …”
  18. 78

    16-node network structure diagram. by Naiwei Tu (22177688)

    Published 2025
    “…The lower considers the economic effect of the loss during repair and determines the optimal fault repair sequence. Furthermore, an enhanced Nutcracker Optimization algorithm to solve the bilayer model was proposed, determining the dynamic combination of the fault reconfiguration scheme and the repair sequence. …”
  19. 79

    16-node loop network encoding results. by Naiwei Tu (22177688)

    Published 2025
    “…The lower considers the economic effect of the loss during repair and determines the optimal fault repair sequence. Furthermore, an enhanced Nutcracker Optimization algorithm to solve the bilayer model was proposed, determining the dynamic combination of the fault reconfiguration scheme and the repair sequence. …”
  20. 80

    Time division of several typical loads. by Naiwei Tu (22177688)

    Published 2025
    “…The lower considers the economic effect of the loss during repair and determines the optimal fault repair sequence. Furthermore, an enhanced Nutcracker Optimization algorithm to solve the bilayer model was proposed, determining the dynamic combination of the fault reconfiguration scheme and the repair sequence. …”