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Mathematical Methods for optimizing Big Data Processing

机译:优化大数据处理的数学方法

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This paper addresses the creation and application of mathematical methods to optimize the main characteristics of Big Data. This involves reducing the amount of information processed as well as increasing search speed and processing data while maintaining their respective values and reliability. The foregoing can be achieved by applying the proposed data organization structure called “m-tuples based on ordered sets of arbitrary cardinality”. This ordered structure describes a Boolean template in general. The Boolean template is an ordered set consisting of all subsets of an ordered basis set of arbitrary cardinality and any data type. We conducted a review of modern methodologies used in solving problems of this class. We also describe data organization properties which allow us to predetermine the result of performing certain operations in the structure by its elements using their location without executing a computational algorithm. The graphs represent the “operation of inclusion” when varying the length of the operand tuple. These graphs display the dynamics of changes in the fraction of operand combinations for which one tuple is a subset of the other. We obtained logical conclusions about the influence of the properties and mathematical methods of working with the structure. This allows us to minimize computational resources.
机译:本文介绍了数学方法的创建和应用,以优化大数据的主要特征。这涉及减少处理的信息量以及提高搜索速度和处理数据,同时保持它们各自的值和可靠性。前述内容可以通过应用所提出的数据组织结构来实现,该结构称为“基于任意基数的有序集合的m元组”。此有序结构通常描述一个布尔模板。布尔模板是一个有序集,由任意基数和任何数据类型的有序基础集的所有子集组成。我们对用于解决此类问题的现代方法论进行了回顾。我们还描述了数据组织属性,这些属性使我们能够通过使用元素的位置来预定结构中某些操作的结果,而无需执行计算算法。这些图表示更改操作数元组的长度时的“包含操作”。这些图显示了一个元组是另一个元组的子集的操作数组合的分数变化的动态。我们获得了有关属性影响的逻辑结论以及使用该结构的数学方法。这使我们可以最大程度地减少计算资源。

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