Regression tree-based active learning

被引:0
|
作者
Ashna Jose
João Paulo Almeida de Mendonça
Emilie Devijver
Noël Jakse
Valérie Monbet
Roberta Poloni
机构
[1] Univ. Grenoble Alpes,
[2] CNRS,undefined
[3] Grenoble INP,undefined
[4] SIMaP,undefined
[5] Univ. Grenoble Alpes,undefined
[6] CNRS,undefined
[7] Grenoble INP,undefined
[8] LIG,undefined
[9] Univ. Rennes and Inria,undefined
[10] CNRS,undefined
[11] IRMAR-UMR 6625,undefined
来源
关键词
Active learning; Non-parametric regression; Standard regression trees; Query-based learning;
D O I
暂无
中图分类号
学科分类号
摘要
Machine learning algorithms often require large training sets to perform well, but labeling such large amounts of data is not always feasible, as in many applications, substantial human effort and material cost is needed. Finding effective ways to reduce the size of training sets while maintaining the same performance is then crucial: one wants to choose the best sample of fixed size to be labeled among a given population, aiming at an accurate prediction of the response. This challenge has been studied in detail in classification, but not deeply enough in regression, which is known to be a more difficult task for active learning despite its need in practice. Few model-free active learning methods have been proposed that detect the new samples to be labeled using unlabeled data, but they lack the information of the conditional distribution between the response and the features. In this paper, we propose a standard regression tree-based active learning method for regression that improves significantly upon existing active learning approaches. It provides impressive results for small and large training sets and an appreciably low variance within several runs. We also exploit model-free approaches, and adapt them to our algorithm to utilize maximum information. Through experiments on numerous benchmark datasets, we demonstrate that our framework improves existing methods and is effective in learning a regression model from a very limited labeled dataset, reducing the sample size for a fixed level of performance, even with many features.
引用
收藏
页码:420 / 460
页数:40
相关论文
共 50 条
  • [21] Regression tree-based diagnostics for linear multilevel models
    Simonoff, Jeffrey S.
    [J]. STATISTICAL MODELLING, 2013, 13 (5-6) : 459 - 480
  • [22] Variable Selection Issues in Tree-Based Regression Models
    Qin, Xiao
    Han, Junhee
    [J]. TRANSPORTATION RESEARCH RECORD, 2008, National Research Council (2061) : 30 - 38
  • [23] A Regression Tree-Based Analysis of the European Regional Competitiveness
    Bocci, Laura
    D'Urso, Pierpaolo
    Vicari, Donatella
    Vitale, Vincenzina
    [J]. SOCIAL INDICATORS RESEARCH, 2024, 173 (01) : 137 - 167
  • [24] Comparison of regression tree-based methods in genomic selection
    Sahar Ashoori-Banaei
    Farhad Ghafouri-Kesbi
    Ahmad Ahmadi
    [J]. Journal of Genetics, 2021, 100
  • [25] Effectiveness of Tree-based Ensembles for Anomaly Discovery: Insights, Batch and Streaming Active Learning
    Das, Shubhomoy
    Islam, Md Rakibul
    Jayakodi, Nitthilan Kannappan
    Doppa, Janardhan Rao
    [J]. Journal of Artificial Intelligence Research, 2024, 80 : 127 - 170
  • [26] Effectiveness of Tree-based Ensembles for Anomaly Discovery: Insights, Batch and Streaming Active Learning
    Das, Shubhomoy
    Islam, Md Rakibul
    Jayakodi, Nitthilan Kannappan
    Doppa, Janardhan Rao
    [J]. JOURNAL OF ARTIFICIAL INTELLIGENCE RESEARCH, 2024, 80 : 127 - 170
  • [27] Tree-Based Methods for Statistical Learning in R
    Hu, Jianchang
    [J]. BIOMETRICAL JOURNAL, 2022, 64 (08) : 1500 - 1501
  • [28] Guidelines for Tree-based Learning Goal Structuring
    Peters, Rifca
    Broekens, Joost
    Neerincx, Mark A.
    [J]. IUI'17: PROCEEDINGS OF THE 22ND INTERNATIONAL CONFERENCE ON INTELLIGENT USER INTERFACES, 2017, : 401 - 405
  • [29] Tree-based batch mode reinforcement learning
    Ernst, D
    Geurts, P
    Wehenkel, L
    [J]. JOURNAL OF MACHINE LEARNING RESEARCH, 2005, 6 : 503 - 556
  • [30] Tree-Based On-Line Reinforcement Learning
    Salles Barreto, Andre da Motta
    [J]. PROCEEDINGS OF THE TWENTY-EIGHTH AAAI CONFERENCE ON ARTIFICIAL INTELLIGENCE, 2014, : 2417 - 2423