Simulation-Based Design Optimization for Statistical Power: Utilizing Machine Learning

被引:1
|
作者
Zimmer, Felix [1 ]
Debelak, Rudolf [1 ]
机构
[1] Univ Zurich, Dept Psychol, Div Psychol Methods Evaluat & Stat, Binzmuehlestr 14,Box 27, CH-8050 Zurich, Switzerland
基金
瑞士国家科学基金会;
关键词
simulation; sample size; power analysis; machine learning; SAMPLE-SIZE; EFFICIENT; PACKAGE; TRIALS;
D O I
10.1037/met0000611
中图分类号
B84 [心理学];
学科分类号
04 ; 0402 ;
摘要
The planning of adequately powered research designs increasingly goes beyond determining a suitable sample size. More challenging scenarios demand simultaneous tuning of multiple design parameter dimensions and can only be addressed using Monte Carlo simulation if no analytical approach is available. In addition, cost considerations, for example, in terms of monetary costs, are a relevant target for optimization. In this context, optimal design parameters can imply a desired level of power at minimum cost or maximum power at a cost threshold. We introduce a surrogate modeling framework based on machine learning predictions to solve these optimization tasks. In a simulation study, we demonstrate the efficiency for a wide range of hypothesis testing scenarios with single- and multidimensional design parameters, including t tests, analysis of variance, item response theory models, multilevel models, and multiple imputations. Our framework provides an algorithmic solution for optimizing study designs when no analytic power analysis is available, handling multiple design dimensions and cost considerations. Our implementation is publicly available in the R package mlpwr.
引用
收藏
页数:25
相关论文
共 50 条
  • [31] Simulation-based design optimization methodologies applied to CFD
    Parry, J
    Bornoff, R
    Stehouwer, P
    Driessen, L
    Stinstra, E
    NINETEENTH ANNUAL IEEE SEMICONDUCTOR THERMAL MEASUREMENT AND MANAGEMENT SYMPOSIUM, 2003, : 8 - 13
  • [32] RBF morphing techniques for simulation-based design optimization
    Sieger, Daniel
    Menzel, Stefan
    Botsch, Mario
    ENGINEERING WITH COMPUTERS, 2014, 30 (02) : 161 - 174
  • [33] RBF morphing techniques for simulation-based design optimization
    Daniel Sieger
    Stefan Menzel
    Mario Botsch
    Engineering with Computers, 2014, 30 : 161 - 174
  • [34] Simulation-based design optimization methodologies applied to CFD
    Parry, J
    Bornoff, RB
    Stehouwer, P
    Driessen, LT
    Stinstra, E
    IEEE TRANSACTIONS ON COMPONENTS AND PACKAGING TECHNOLOGIES, 2004, 27 (02): : 391 - 397
  • [35] A methodology for simulation-based, multiobjective gear design optimization
    Artoni, Alessio
    MECHANISM AND MACHINE THEORY, 2019, 133 : 95 - 111
  • [36] Simulation-based twist drill design and geometry optimization
    Abele, E.
    Fujara, M.
    CIRP ANNALS-MANUFACTURING TECHNOLOGY, 2010, 59 (01) : 145 - 150
  • [37] Simulation-based optimization
    Law, AM
    McComas, MG
    PROCEEDINGS OF THE 2000 WINTER SIMULATION CONFERENCE, VOLS 1 AND 2, 2000, : 46 - 49
  • [38] Simulation-based optimization
    Law, AM
    McComas, MG
    PROCEEDINGS OF THE 2002 WINTER SIMULATION CONFERENCE, VOLS 1 AND 2, 2002, : 41 - 44
  • [39] Simulation-based optimization: Parametric optimization techniques and reinforcement learning.
    Zilinskas, A
    INTERFACES, 2005, 35 (06) : 535 - 536
  • [40] Machine Learning Approach for Accelerating Simulation-based Fault Injection
    Lu, Li
    Chen, Junchao
    Breitenreiter, Anselm
    Schrape, Oliver
    Ulbricht, Markus
    Krstic, Milos
    2021 IEEE NORDIC CIRCUITS AND SYSTEMS CONFERENCE (NORCAS), 2021,