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Application of an improved genetic algorithm for the adaptation of X-ray data

机译:改进的遗传算法在X射线数据自适应中的应用

摘要

A method of determining parameters of a sample by X-ray scattering comprising the steps of a) exposing the sample to X-rays and measuring scattered X-ray intensity; b) generating a parameterised model of the sample which is used for numerical simulation of scattered X-ray intensity on the basis of a physical scattering theory; c) comparing the experimental and simulated X-ray scattering data to generate an error value; d) modifying the parameters of the model by means of a genetic algorithm involving an amount of individuals each with an equal number N of encoded parameters forming a generation and applying the genetic operators of "selection", "crossover" and "mutation" used for composing successive generations of evolving individuals, is characterised in that from one generation to the next a "movement" genetic operator is applied which moves at least some of the encoded parameters of at least some of the individuals towards the respective encoded parameters of the individual with the smallest error value. The inventive method improves the genetic algorithm such that it can approximate the true sample parameters faster and with a better reliability. IMAGE
机译:一种通过X射线散射确定样品参数的方法,包括以下步骤:a)将样品暴露于X射线并测量散射的X射线强度; b)基于物理散射理论产生用于散射X射线强度的数值模拟的样品的参数化模型; c)比较实验和模拟的X射线散射数据以产生误差值; d)通过遗传算法修改模型的参数,该遗传算法涉及一定数量的个体,每个个体具有相等数量的N个编码参数,形成一个世代,并应用遗传选择符“选择”,“交叉”和“变异”组成连续进化的个体的世代,其特征在于,从一代到下一代应用“运动”遗传算子,该遗传算子将至少一些个体的至少一些编码参数移向个体的各个编码参数。最小的误差值。本发明的方法改进了遗传算法,使得它可以更快地并且具有更好的可靠性来逼近真实样本参数。 <图像>

著录项

  • 公开/公告号DE60329105D1

    专利类型

  • 公开/公告日2009-10-15

    原文格式PDF

  • 申请/专利权人 BRUKER AXS GMBH;

    申请/专利号DE20036029105T

  • 发明设计人 ULYANENKOV ALEX;SOBOLEWSKI STANISLAW;

    申请日2003-10-07

  • 分类号G06N3/12;G01N23/20;

  • 国家 DE

  • 入库时间 2022-08-21 19:07:42

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