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Several approaches to parallel computing in the Boolean domain

机译:布尔域中几种并行计算方法

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Each additional variable doubles the number of function values of a Boolean function. This exponential increase is known as combinational explosion and limits strongly the solvable problems for a given computer. In order to solve larger Boolean problems, it is necessary to exploit each concept that reduces the required efforts. The parallel consideration of all Boolean variables that are assigned to a machine word of the computer, the mapping of an exponential number of Boolean vectors to a single ternary vector, and the distribution of the calculations to several Boolean spaces are some approaches which were realized in the software package XBOOLE. An important further approach is the segmentation of the Boolean tasks and their parallel computation using several connected computers as well as the available processor cores of these computers. In this paper we explore alternative approaches to parallel computations of Boolean problems. Experimental results document the achieved benefits.
机译:每个附加变量使布尔函数的函数值数量加倍。这种指数增长被称为组合爆炸,它极大地限制了给定计算机的可解决问题。为了解决较大的布尔问题,有必要利用减少所需工作量的每个概念。并行考虑分配给计算机机器字的所有布尔变量,将指数数量的布尔向量映射到单个三元向量以及将计算分布到几个布尔空间的方法是在以下方面实现的:软件包XBOOLE。另一个重要的方法是使用几台相连的计算机以及这些计算机的可用处理器内核对布尔任务进行分段并对其进行并行计算。在本文中,我们探索了布尔问题并行计算的替代方法。实验结果证明了所获得的好处。

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