Depth is More Powerful than Width with Prediction Concatenation in Deep Forest
Shen-Huan Lyu, Yi-Xiao He, Zhi-Hua Zhou
Abstract
Random Forest (RF) is an ensemble learning algorithm proposed by Breiman [1] that constructs a large number of randomized decision trees individually and aggregates their predictions by naive averaging. Zhou and Feng [2] further propose Deep Forest (DF) algorithm with multi-layer feature transformation, which significantly outperforms random forest in various application fields. The prediction concatenation (PreConc) operation is crucial for the multi-layer feature transformation in deep forest, though little has been known about its theoretical property. In this paper, we analyze the influence of Preconc on the consistency of deep forest. Especially when the individual tree is inconsistent (as in practice, the individual tree is often set to be fully grown, i.e., there is only one sample at each leaf node), we find that the convergence rate of two-layer DF w.r.t. the number of trees M can reach O (1 /M 2 ) under some mild conditions, while the convergence rate of RF is O (1 /M ) . Therefore, with the help of PreConc, DF with deeper layer will be more powerful than the shallower layer. Experiments confirm theoretical advantages.
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- Learning Parities with Neural NetworksAmit Daniely, Eran MalachNeurIPS 2020 · 104 citations
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- Learning from Weak-Label Data: A Deep Forest ExpeditionQian-Wei Wang, Liang Yang, Yufeng LiAAAI 2020 · 21 citations
- From global to local MDI variable importances for random forests and when they are Shapley valuesAntonio Sutera, Gilles Louppe, Vân Anh Huynh-Thu, Louis Wehenkel et al.NeurIPS 2021 · 16 citations
- Analyzing the tree-layer structure of Deep ForestsLudovic Arnould, Claire Boyer, Erwan ScornetICML 2021 · 12 citations
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