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A grid-based genetic algorithm combined with an adaptive simulated annealing for protein structure prediction

机译:基于网格的遗传算法与自适应模拟退火相结合的蛋白质结构预测

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摘要

A hierarchical hybrid model of parallel metaheuristics is proposed, combining an evolutionary algorithm and an adaptive simulated annealing. The algorithms are executed inside a grid environment with different parallelization strategies: the synchronous multi-start model, parallel evaluation of different solutions and an insular model with asynchronous migrations. Furthermore, a conjugated gradient local search method is employed at different stages of the exploration process. The algorithms were evaluated using the protein structure prediction problem, having as benchmarks the tryptophan-cage protein (Brookhaven Protein Data Bank ID: 1L2Y), the tryptophan-zipper protein (PDB ID: 1LE1) and the α-Cyclodextrin complex. Experimentations were performed on a nation-wide grid infrastructure, over six distinct administrative domains and gathering nearly 1,000 CPUs. The complexity of the protein structure prediction problem remains prohibitive as far as large proteins are concerned, making the use of parallel computing on the computational grid essential for its efficient resolution.
机译:提出了一种并行元启发式的层次混合模型,结合了进化算法和自适应模拟退火算法。这些算法在具有不同并行化策略的网格环境中执行:同步多启动模型,不同解决方案的并行评估以及具有异步迁移的孤立模型。此外,在勘探过程的不同阶段采用了共轭梯度局部搜索方法。使用蛋白质结构预测问题对算法进行了评估,以色氨酸笼蛋白(Brookhaven蛋白质数据库ID:1L2Y),色氨酸拉链蛋白(PDB ID:1LE1)和α-环糊精复合物为基准。实验是在全国性的网格基础架构上,六个不同的管理域上进行的,并收集了将近1000个CPU。就大型蛋白质而言,蛋白质结构预测问题的复杂性仍然令人望而却步,这使得在计算网格上使用并行计算对其有效解析至关重要。

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  • 来源
    《Soft Computing》 |2008年第12期|1185-1198|共14页
  • 作者单位

    Laboratoire d’Informatique Fondamentale de Lille LIFL/CNRS UMR 8022 DOLPHIN Project - INRIA Futurs Cité Scientifique 59655 Villeneuve d’Ascq Cedex France;

    Laboratoire d’Informatique Fondamentale de Lille LIFL/CNRS UMR 8022 DOLPHIN Project - INRIA Futurs Cité Scientifique 59655 Villeneuve d’Ascq Cedex France;

    Laboratoire d’Informatique Fondamentale de Lille LIFL/CNRS UMR 8022 DOLPHIN Project - INRIA Futurs Cité Scientifique 59655 Villeneuve d’Ascq Cedex France;

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