Showing 21 - 40 results of 95 for search 'snake (optimizer OR optimize)', query time: 0.10s Refine Results
  1. 21

    Adaptive chaotic gaussian lens snake optimization algorithm for improved cotton field sensor coverage and utilization by Chenglong Ban, Xiang Liu, Min Tian, Zhonghua Lu, Ruoxue Xiang, Jie Zhou

    Published 2025-07-01
    “…This paper introduces an Adaptive Chaotic Gaussian Lens Snake Optimization Algorithm (ACGLSOA) to address this issue. …”
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    Synthesis and Optimization of Snake Fruit Peel Ash-Derived Silica for Iron (Fe) Removal from Batik Wastewater by Siti Salamah, Ilham Mufandi, Jumiati Jumiati, Ainun Fadhilah

    Published 2025-01-01
    “…The aim of this study is to synthesize and optimize silica derived from snake fruit peel ash as an adsorbent for iron (Fe) in the liquid waste of the batik industry. …”
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  4. 24

    Automatic Brain Tumor Segmentation from MRI using Greedy Snake Model and Fuzzy C-Means Optimization by C. Jaspin Jeba Sheela, G. Suganthi

    Published 2022-03-01
    “…This paper proposes an efficient automatic brain tumor segmentation using Greedy Snake Model and Fuzzy C-Means optimization. This method initially identifies the approximate Region Of Interest (ROI), by removing the non-tumor part by two level morphological reconstruction such as dilation and erosion. …”
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    An innovative coverage optimization method for smart information monitoring in agricultural IoT using the multi-strategy Pelican optimization algorithm by Wei Chen, Qike Cao, Bingyu Cao, Bo Jin

    Published 2025-04-01
    “…Comparative experiments with Improved Artificial Bee Colony Algorithm (IABC), Chaotic Adaptive Firefly Optimization Algorithm (CAFA), Adaptive Particle Swarm Optimization (APSO), and Lévy Flight Strategy Chaotic Snake Optimization Algorithm (LCSO) demonstrate that MSPOA improves network coverage by 5.85%, 11.33%, 21.05%, and 20.66%, respectively. …”
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    Efficient Locomotion for Space Robots Inspired by the Flying Snake by Zhiyuan Yang, Sikai Zhao, Nanlin Zhou, Jian Qi, Ning Zhao, Jizhuang Fan, Jie Zhao, Yanhe Zhu

    Published 2024-12-01
    “…Then, during the flight (free-floating) phase, the joint motions are planned using a nonlinear optimization technique, considering the nonholonomic constraints introduced by the momentum conservation and the system states at the initial and final states of the floating. …”
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  17. 37

    Design and Realize a Snake-Like Robot in Complex Environment by Bingqi Liu, Mingzhe Liu, Xianghe Liu, Xianguo Tuo, Xing Wang, Shibo Zhao, Tingting Xiao

    Published 2019-01-01
    “…We use Solidworks to optimize the design of head, body, and tail joint structure of the snake-like robot. …”
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  18. 38

    Melanin‐based color variation in response to changing climates in snakes by J. Goldenberg, K. Bisschop, G. Bruni, M. R. Di Nicola, F. Banfi, F. P. Faraone

    Published 2024-07-01
    “…To disentangle such opposing predictions, here we examined the effect of climate on shaping melanism variation in 150 barred grass snakes (Natrix helvetica) and 383 green whip snakes (Hierophis viridiflavus) across Italy. …”
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  19. 39

    BeSnake: A Routing Algorithm for Scalable Spin-Qubit Architectures by Nikiforos Paraskevopoulos, Carmen G. Almudever, Sebastian Feld

    Published 2024-01-01
    “…Unlike traditional methods in superconducting architectures that solely rely on <sc>swap</sc> operations, beSnake also incorporates the shuttle operation to optimize the execution time and fidelity of quantum circuits and achieves fast computation times of the routing task itself. …”
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  20. 40

    Dynamic Snake Convolution Neural Network for Enhanced Image Super-Resolution by Weiqiang Xin, Ziang Wu, Qi Zhu, Tingting Bi, Bing Li, Chunwei Tian

    Published 2025-07-01
    “…DSCNN optimizes feature extraction and network architecture to enhance both performance and efficiency: To improve feature extraction, the core innovation is a feature extraction and enhancement module with dynamic snake convolution that dynamically adjusts the convolution kernel’s shape and position to better fit the image’s geometric structures, significantly improving feature extraction. …”
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