Search Results - "Crayfish optimization algorithm"

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  1. 1

    Based on improved crayfish optimization algorithm cooperative optimal scheduling of multi-microgrid system by Yan, Dongmei, Wang, Hongkun, Gao, Yujie, Tian, Shiji, Zhang, Hong

    ISSN: 2045-2322, 2045-2322
    Published: London Nature Publishing Group UK 22.10.2024
    Published in Scientific reports (22.10.2024)
    “… Subsequently, based on the four improvement methods of Chaotic Map, Quantum Behavior, Gaussian Distribution, and Nonlinear Control Strategy, the Chaotic Gaussian Quantum Crayfish Optimization…”
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    Journal Article
  2. 2

    Analyzing social psychological impact on emotional expression through peer communication using crayfish optimization algorithm with deep learning model by Alzubaidi, Umkalthoom

    ISSN: 2045-2322, 2045-2322
    Published: London Nature Publishing Group UK 19.07.2025
    Published in Scientific reports (19.07.2025)
    “… Sentiment analysis (SA) identifies people’s emotions, attitudes, and sentiments towards a given target, like activities, people, services, organizations, products, and subjects…”
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    Journal Article
  3. 3

    Bayesian optimization with deep learning based pepper leaf disease detection for decision-making in the agricultural sector by Alhashmi, Asma A, Alohali, Manal Abdullah, Ijaz, Nazir Ahmad, Khadidos, Alaa O., Alghushairy, Omar, Sayed, Ahmed

    ISSN: 2473-6988, 2473-6988
    Published: AIMS Press 01.01.2024
    Published in AIMS mathematics (01.01.2024)
    “…Agricultural decision-making involves a complex process of choosing strategies and options to enhance resource utilization, overall productivity, and farming…”
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  4. 4

    Research on End-Effector Position Error Compensation of Industrial Robotic Arm Based on ECOA-BP by Xiang, Wenping, Chen, Junhua, Li, Hao, Chai, Zhiyuan, Lou, Yinghou

    ISSN: 1424-8220, 1424-8220
    Published: Switzerland MDPI AG 01.01.2025
    Published in Sensors (Basel, Switzerland) (01.01.2025)
    “…Industrial robotic arms are often subject to significant end-effector pose deviations from the target position due to the combined effects of nonlinear deformations such as link flexibility, joint…”
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