计划实验的强正交阵列和基于正交阵列的拉丁超立方体设计:一种改进生物医学研究研究设计的方法

K. Osuolale, A. Musa, W. B. Yahya, O. Otekunrin, Lateef Adeleke Babatunde
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引用次数: 0

摘要

基于正交阵列的拉丁超立方体设计(oalhd)不仅在计算机实验开发中得到了广泛的应用,而且在设计一些传统实验时也很有帮助。计算机实验的设计建设已经成为一个新颖的领域,特别是在尼日利亚和非洲,因为它更多的是关于实验规划而不是建模方面,在这方面已经取得了一些进展。本研究采用Bush Construction Type II方法,利用s阶伽罗瓦场(Galois Fields, GF)构建强度为3的强正交阵列(OA),由此构建基于正交阵列的拉丁超立方体设计(oalhd)进行规划实验。为了获得随机拉丁超立方体设计(LHD)无法实现的更好的空间填充性能,本研究将OALHD作为基于正交阵列构建的拉丁超立方体设计。正交阵列(N, k) LHD分别以OA (N, k) =(216,8)和(343,9)为参数值构建。本研究旨在将构建的正交阵列(N, k) LHD应用于生物医学研究中,以改进研究设计。应用中使用了HIV患者健康数据的健康相关质量。这在医疗领域是一种新颖的方法。构造方法采用具有欧氏距离的k近邻极大值准则构造强正交阵列拉丁超立方体设计。构建的OA (216,8) LHD和OA (343,9) LHD具有较好的空间填充性能,在设计变量的各个维度上达到均匀性。本研究认为oalhd可用于改善生物医学研究的研究设计。使用MATLAB 2016计算机包进行程序的实现和分析。关键词:计算机实验,布什构造II型法,伽罗瓦场,拉丁超立方体设计,正交阵列
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strong Orthogonal Arrays and Orthogonal Array-Based Latin Hypercube Designs for Planning Experiments: A Method for Improving Study Design in Biomedical Research
Orthogonal Array-based Latin Hypercube Designs (OALHDs) have not only become popular in practice among techniques used in the development of computer experiments but also helpful whenever interest is on designing some traditional experiments. Design construction for computer experiments has become a novel area especially in Nigeria and Africa at large since it is more about experimental planning rather than modelling aspect in which some progress has been made. The Bush Construction Type II method was used in this study to construct a strong Orthogonal Array (OA) of strength three, using Galois Fields (GF) of order s which gave rise to the constructed Orthogonal Array-Based Latin Hypercube Designs (OALHDs) for planning experiments. The OALHD was used in this research as a Latin hypercube design constructed based on orthogonal arrays in order to achieve better space-filling properties that would otherwise not be accomplished by a random Latin hypercube design (LHD). Orthogonal Array (N, k) LHD were constructed at parameter values of OA (N, k) = (216, 8) and (343, 9). This study aims at applying the OALHDs constructed to improve the study design or conducted in biomedical research. The health related quality of health data of HIV patients was used in the application. This is a novel approach in the medical setting. The method of construction employed the maximin criterion in the k- Nearest Neighbour with Euclidean distance for constructing strong the Orthogonal Array-Based Latin Hypercube Designs (OALHDs). The OA (216, 8) LHD and OA (343, 9) LHD constructed possessed better space-filling properties and they achieve uniformity in each dimension of the designed variables. This study concludes that the OALHDs can be used to improve the study design in biomedical research. A MATLAB 2016 computer package was used for program implementation and analysis. Keywords: Computer experiments, Bush construction type II method, Galois fields, Latin hypercube designs, Orthogonal array
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