首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Software News and Update Optimized and Parallelized Implementation of the Electronegativity Equalization Method and the Atom-Bond Electronegativity Equalization Method
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Software News and Update Optimized and Parallelized Implementation of the Electronegativity Equalization Method and the Atom-Bond Electronegativity Equalization Method

机译:电负性均衡方法和原子键电负性均衡方法的软件新闻和更新优化并行实现

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The most common way to calculate charge distribution in a molecule is ab initio quantum mechanics (QM).Some faster alternatives to QM have also been developed,the so-called "equalization methods" EEM and ABEEM,which are based on DFT.We have implemented and optimized the EEM and ABEEM methods and created the EEM SOLVER and ABEEM SOLVER programs.It has been found that the most time-consuming part of equalization methods is the reduction of the matrix belonging to the equation system generated by the method.Therefore,for both methods this part was replaced by the parallel algorithm WIRS and implemented within the PVM environment.The parallelized versions of the programs EEM SOLVER and ABEEM SOLVER showed promising results,especially on a single computer with several processors (compact PVM).The implemented programs are available through the Web page http:/cbr.chemi.muni.cz/approx n 19n/eem_abeem.
机译:从头算量子力学(QM)是计算分子中电荷分布的最常见方法。还开发了一些更快的QM替代方法,即基于DFT的所谓的“均衡方法” EEM和ABEEM。实施和优化EEM和ABEEM方法并创建EEM SOLVER和ABEEM SOLVER程序。发现均衡方法最耗时的部分是归因于该方法生成的方程组的矩阵。对于这两种方法,这部分都被并行算法WIRS代替,并在PVM环境中实现。EEM SOLVER和ABEEM SOLVER程序的并行版本显示了令人鼓舞的结果,尤其是在具有多个处理器的单一计算机(紧凑型PVM)上。可通过以下网页获得:http:/cbr.chemi.muni.cz/approx n 19n / eem_abeem。

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