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首页> 外文期刊>Journal of supercomputing >Exploiting multilevel parallelism on a many-core system for the application of hyperheuristics to a molecular docking problem
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Exploiting multilevel parallelism on a many-core system for the application of hyperheuristics to a molecular docking problem

机译:在多核系统上开发多级并行性,以将超启发式方法应用于分子对接问题

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摘要

The solution of Protein-Ligand Docking Problems can be approached through metaheuristics, and satisfactory metaheuristics can be obtained with hyperheuristics searching in the space of metaheuristics implemented inside a parameterized schema. These hyperheuristics apply several metaheuristics, resulting in high computational costs. To reduce execution times, a shared-memory schema of hyperheuristics is used with four levels of parallelism, two for the hyperheuristic and two for the metaheuristics. The parallel schema is executed in a many-core system in "native mode," and the four-level parallelism allows us to take full advantage of the massive parallelism offered by this architecture and obtain satisfactory fitness and an important reduction in the execution time.
机译:蛋白质配体对接问题的解决方案可以通过元启发式方法来解决,通过在参数化方案内部实施的元启发式空间中进行超启发式搜索,可以获得令人满意的元启发式方法。这些超启发式方法应用了几种元启发式方法,从而导致较高的计算成本。为了减少执行时间,将超启发式方法的共享内存模式与四个并行级别一起使用,两个级别用于超启发式方法,另外两个用于元启发式方法。并行模式是在“本机模式”的多核系统中执行的,四级并行性使我们能够充分利用此体系结构提供的大规模并行性,并获得令人满意的适应性并显着减少执行时间。

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