Showing 181 - 200 results of 680 for search '(( algorithm within function ) OR ( algorithm api function ))', query time: 0.20s Refine Results
  1. 181

    Functional Projection <i>K</i>-means by Roberto Rocci (16022201)

    Published 2025
    “…<p>A new technique for simultaneous clustering and dimensionality reduction of functional data is proposed. The observations are projected into a low-dimensional subspace and clustered by means of a functional <i>K</i>-means. …”
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    Enhanced USV path planning through integrated Bi-RRT and DWA algorithms considering environmental factors by Yanghua Zhou (20449441)

    Published 2024
    “…Furthermore, the evaluation function of the DWA algorithm undergoes enhancements, incorporating elements from heuristic functions within the A* algorithm and radar-based assessment of search range. …”
  4. 184
  5. 185

    The GA iteration result. by Jiaqing Huang (5018492)

    Published 2025
    “…This study proposes a hybrid model—Genetic Algorithm-optimized Fuzzy Neural Network (GA-FNN)—to enhance bank risk identification within this context. …”
  6. 186

    GA crossover and mutation process. by Jiaqing Huang (5018492)

    Published 2025
    “…This study proposes a hybrid model—Genetic Algorithm-optimized Fuzzy Neural Network (GA-FNN)—to enhance bank risk identification within this context. …”
  7. 187

    The framework for the proposed model and GA-FNN. by Jiaqing Huang (5018492)

    Published 2025
    “…This study proposes a hybrid model—Genetic Algorithm-optimized Fuzzy Neural Network (GA-FNN)—to enhance bank risk identification within this context. …”
  8. 188

    The structure for the FNN. by Jiaqing Huang (5018492)

    Published 2025
    “…This study proposes a hybrid model—Genetic Algorithm-optimized Fuzzy Neural Network (GA-FNN)—to enhance bank risk identification within this context. …”
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  15. 195

    VEP annotation of the aSNPs listed in S1 Table. by Rongxin Zhang (1618159)

    Published 2025
    “…<div><p>G-quadruplexes (G4s) are nucleic acid secondary structures with important regulatory functions. Single-nucleotide variants (SNVs), one of the most common forms of genetic variation, can potentially impact the formation of G4 structures if they occur within G4 regions. …”
  16. 196

    G4SNVHunter workflow for identifying variants that affect G4 formation. by Rongxin Zhang (1618159)

    Published 2025
    “…Subsequently, the impact of the variants on the formation potential of the identified G4s will be assessed based on the G4Hunter algorithm (Middle panel). Finally, candidate variants can be filtered and visualized using functions provided by G4SNVHunter to screen out those that can potentially disrupt the formation of G4 structures (Right panel). …”
  17. 197

    S1 Dataset - by Ruochen Zhang (3434996)

    Published 2024
    “…The optimization results are further discussed to find specific paths for optimizing different objective functions. In general, adding edges within the same community is helpful for promoting ACC, while adding edges between different communities is beneficial for reducing APL. …”
  18. 198

    Statistical tests of ACC on the random network. by Ruochen Zhang (3434996)

    Published 2024
    “…The optimization results are further discussed to find specific paths for optimizing different objective functions. In general, adding edges within the same community is helpful for promoting ACC, while adding edges between different communities is beneficial for reducing APL. …”
  19. 199

    Parameters in the experiment. by Ruochen Zhang (3434996)

    Published 2024
    “…The optimization results are further discussed to find specific paths for optimizing different objective functions. In general, adding edges within the same community is helpful for promoting ACC, while adding edges between different communities is beneficial for reducing APL. …”
  20. 200

    Statistical tests of APL on the random network. by Ruochen Zhang (3434996)

    Published 2024
    “…The optimization results are further discussed to find specific paths for optimizing different objective functions. In general, adding edges within the same community is helpful for promoting ACC, while adding edges between different communities is beneficial for reducing APL. …”