Approximate Bayesian Computation via Classification

被引:0
|
作者
Wang, Yuexi [1 ]
Kaji, Tetsuya [1 ]
Rockova, Veronika [1 ]
机构
[1] Univ Chicago, Booth Sch Business, Chicago, IL 60637 USA
基金
美国国家科学基金会;
关键词
Approximate Bayesian Computation; Classification; Likelihood-free Inference; Kullback-Leibler Divergence; Posterior Concentration; DIVERGENCE ESTIMATION; INFERENCE;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Approximate Bayesian Computation (ABC) enables statistical inference in simulator-based models whose likelihoods are difficult to calculate but easy to simulate from. ABC constructs a kernel-type approximation to the posterior distribution through an accept/reject mechanism which compares summary statistics of real and simulated data. To obviate the need for summary statistics, we directly compare empirical distributions with a Kullback-Leibler (KL) divergence estimator obtained via contrastive learning. In particular, we blend flexible machine learning classifiers within ABC to automate fake/real data comparisons. We consider the traditional accept/reject kernel as well as an exponential weighting scheme which does not require the ABC acceptance threshold. Our theoretical results show that the rate at which our ABC posterior distributions concentrate around the true parameter depends on the estimation error of the classifier. We derive limiting posterior shape results and find that, with a properly scaled exponential kernel, asymptotic normality holds. We demonstrate the usefulness of our approach on simulated examples as well as real data in the context of stock volatility estimation.
引用
收藏
页数:49
相关论文
共 50 条
  • [21] Approximate Bayesian computation with differential evolution
    Turner, Brandon M.
    Sederberg, Per B.
    JOURNAL OF MATHEMATICAL PSYCHOLOGY, 2012, 56 (05) : 375 - 385
  • [22] Asymptotic properties of approximate Bayesian computation
    Frazier, D. T.
    Martin, G. M.
    Robert, C. P.
    Rousseau, J.
    BIOMETRIKA, 2018, 105 (03) : 593 - 607
  • [23] Approximate Bayesian Computation for Discrete Spaces
    Auzina, Ilze A.
    Tomczak, Jakub M.
    ENTROPY, 2021, 23 (03) : 1 - 16
  • [24] Summary statistics and discrepancy measures for approximate Bayesian computation via surrogate posteriors
    Forbes, Florence
    Nguyen, Hien Duy
    Nguyen, TrungTin
    Arbel, Julyan
    STATISTICS AND COMPUTING, 2022, 32 (05)
  • [25] LEARNING SUMMARY STATISTIC FOR APPROXIMATE BAYESIAN COMPUTATION VIA DEEP NEURAL NETWORK
    Jiang, Bai
    Wu, Tung-Yu
    Zheng, Charles
    Wong, Wing H.
    STATISTICA SINICA, 2017, 27 (04) : 1595 - 1618
  • [26] On predictive inference for intractable models via approximate Bayesian computation
    Marko Järvenpää
    Jukka Corander
    Statistics and Computing, 2023, 33
  • [27] Non-linear regression models for Approximate Bayesian Computation
    Blum, Michael G. B.
    Francois, Olivier
    STATISTICS AND COMPUTING, 2010, 20 (01) : 63 - 73
  • [28] Approximate Bayesian Computation for infectious disease modelling
    Minter, Amanda
    Retkute, Renata
    EPIDEMICS, 2019, 29
  • [29] Approximate Bayesian Computation: A Survey on Recent Results
    Robert, Christian P.
    MONTE CARLO AND QUASI-MONTE CARLO METHODS, 2016, 163 : 185 - 205
  • [30] Approximate Bayesian computation for finite mixture models
    Simola, Umberto
    Cisewski-Kehe, Jessi
    Wolpert, Robert L.
    JOURNAL OF STATISTICAL COMPUTATION AND SIMULATION, 2021, 91 (06) : 1155 - 1174