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首页> 外文期刊>The Journal of Chemical Physics >An efficient direct method for geometry optimization of large molecules in internal coordinates
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An efficient direct method for geometry optimization of large molecules in internal coordinates

机译:内部坐标中大分子几何优化的一种有效直接方法

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A new efficient procedure has been developed for geometry optimization of large molecules using internal coordinates. The method stores only the nonzero elements of the large transformation matrices, in the spirit of direct methods in electronic structure theory. Matrix inversion has been replaced by iterative solution of linear systems of equations by the preconditioned conjugate gradient method. A new incomplete Cholesky preconditioner proved essential to accelerate the conjugate gradient procedure, The geometries of several alpha helical alanine polypeptides, up to 50 alanine units, have been optimized by the new method, using the SYBYL force field. For larger systems, the number of energy/gradient evaluations is reduced by a factor of 6-10, compared to Cartesian optimization, and the cost of the optimization is small compared to the energy calculation, We expect this method to be useful in molecular mechanics and in mixed quantum mechanics/molecular mechanics calculations. (C) 1998 American Institute of Physics. [S0021-9606(98)30140-3]. [References: 32]
机译:已经开发出一种新的有效程序,用于使用内部坐标对大分子进行几何优化。该方法本着电子结构理论中直接方法的精神,仅存储大变换矩阵的非零元素。矩阵反演已被预处理共轭梯度法替换为线性方程组的迭代解。事实证明,新的不完整的Cholesky预处理器对于加速共轭梯度过程至关重要。通过新方法,使用SYBYL力场,可以优化多达50个丙氨酸单位的几种α螺旋丙氨酸多肽的几何形状。对于大型系统,与笛卡尔优化相比,能量/梯度评估的数量减少6-10倍,并且与能量计算相比,优化的成本较小,我们希望此方法可用于分子力学以及混合量子力学/分子力学计算。 (C)1998美国物理研究所。 [S0021-9606(98)30140-3]。 [参考:32]

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