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A constraint solver for discrete lattices, its parallelization, and application to protein structure prediction

机译:离散格的约束求解器,其并行化及其在蛋白质结构预测中的应用

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This paper presents the design, implementation and application of a constraint programming framework on 3D crystal lattices. The framework provides the flexibility to express and resolve constraints dealing with structural relationships of entities placed in a 3D lattice structure in space. Both sequential and parallel implementations of the framework are described, along with experiments that highlight its superior performance with respect to the use of more traditional frameworks (e.g. constraints on finite domains and integer programming) to model lattice constraints. The framework is motivated and applied to address the problem of solving the protein folding prediction problem, i.e. predicting the 3D structure of a protein from its primary amino acid sequence. Results and comparison with performance of other constraint-based solutions to this problem are presented.
机译:本文介绍了在3D晶格上的约束编程框架的设计,实现和应用。该框架提供了表达和解决约束的灵活性,这些约束涉及放置在空间中3D网格结构中的实体的结构关系。描述了框架的顺序和并行实现,以及突出显示其相对于使用更传统的框架(例如有限域约束和整数编程)来建模晶格约束的卓越性能的实验。该框架被激励并应用于解决解决蛋白质折叠预测问题的问题,即从其一级氨基酸序列预测蛋白质的3D结构。给出了该问题的结果以及与其他基于约束的解决方案的性能比较。

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