Fisher loss improves deep domain adaptation by learning discriminative within-class compact and between-class separable representations.
arXiv research
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Nonnegative Matrix Factorization (NMF) has been a popular representation method for pattern classification problem. It tries to decompose a nonnegative matrix of data samples as the product of a nonnegative basic matrix and a nonnegative coefficient matrix, and the coefficient matrix is used as the new representation. …
In this paper, we propose a novel linear discriminant analysis criterion via the Bhattacharyya error bound estimation based on a novel L1-norm (L1BLDA) and L2-norm (L2BLDA). Both L1BLDA and L2BLDA maximize the between-class scatters which are measured by the weighted pairwise distances of class means and meanwhile mini…
Probabilistic linear discriminant analysis (PLDA) is a method used for biometric problems like speaker or face recognition that models the variability of the samples using two latent variables, one that depends on the class of the sample and another one that is assumed independent across samples and models the within-c…
Extends L2-norm LDA to 2D inputs using Bhattacharyya bound.
Paper optimizes classification of distributions using Wasserstein metric.
Graph neural networks (GNNs) have become increasingly popular for classification tasks on graph-structured data. Yet, the interplay between graph topology and feature evolution in GNNs is not well understood. In this paper, we focus on node-wise classification, illustrated with community detection on stochastic block m…
Proposes RBLDA for multivariate time series data classification.
This report works out the details of a closed-form, fully Bayesian, multiclass, openset, generative pattern classifier using multivariate Gaussian likelihoods, with conjugate priors. The generative model has a common within-class covariance, which is proportional to the between-class covariance in the conjugate prior. …
We propose regularization strategies for learning discriminative models that are robust to in-class variations of the input data. We use the Wasserstein-2 geometry to capture semantically meaningful neighborhoods in the space of images, and define a corresponding input-dependent additive noise data augmentation model. …
Sensor drift is a well-known issue in the field of sensors and measurement and has plagued the sensor community for many years. In this paper, we propose a sensor drift correction method to deal with the sensor drift problem. Specifically, we propose a discriminative subspace projection approach for sensor drift reduct…
New hashing method improves document retrieval precision.
Recent advances show that two-dimensional linear discriminant analysis (2DLDA) is a successful matrix based dimensionality reduction method. However, 2DLDA may encounter the singularity issue theoretically and the sensitivity to outliers. In this paper, a generalized Lp-norm 2DLDA framework with regularization for an a…
The "bag-of-frames" approach (BOF), which encodes audio signals as the long-term statistical distribution of short-term spectral features, is commonly regarded as an effective and sufficient way to represent environmental sound recordings (soundscapes) since its introduction in an influential 2007 article. The present …
New framework improves classification accuracy using Pillai's trace and ULDA.
A new method improves few-shot learning by combining ProtoNet with LFD.
Learning from class-imbalanced data continues to be a common and challenging problem in supervised learning as standard classification algorithms are designed to handle balanced class distributions. While different strategies exist to tackle this problem, methods which generate artificial data to achieve a balanced cla…
D-CBRS manages memory for continual learning by accounting for intra-class diversity.
Paper compares credit portfolio risks using robust Bernoulli mixture models.
In this paper, we propose a method for image-set classification based on convex cone models, focusing on the effectiveness of convolutional neural network (CNN) features as inputs. CNN features have non-negative values when using the rectified linear unit as an activation function. This naturally leads us to model a se…
We consider the task of classification in the high dimensional setting where the number of features of the given data is significantly greater than the number of observations. To accomplish this task, we propose a heuristic, called sparse zero-variance discriminant analysis (SZVD), for simultaneously performing linear …
A new measure DCSI quantifies separability for density-based clustering.
This work proposes an adaptive trace lasso regularized L1-norm based graph cut method for dimensionality reduction of Hyperspectral images, called as `Trace Lasso-L1 Graph Cut' (TL-L1GC). The underlying idea of this method is to generate the optimal projection matrix by considering both the sparsity as well as the corr…
Dimensionality reduction (DR) methods have attracted extensive attention to provide discriminative information and reduce the computational burden of the hyperspectral image (HSI) classification. However, the DR methods face many challenges due to limited training samples with high dimensional spectra. To address this …
A new LDA variant improves multi-label classification performance.
Kernel discriminant analysis uses nonlinear embeddings to improve classification.
This paper analyzes the landscape of supervised contrastive loss in over-parameterized networks.
Following related work in law and policy, two notions of disparity have come to shape the study of fairness in algorithmic decision-making. Algorithms exhibit treatment disparity if they formally treat members of protected subgroups differently; algorithms exhibit impact disparity when outcomes differ across subgroups,…
New method improves domain generalization by matching object representations.
Deep nets exhibit 'Neural Collapse' during training's final phase, simplifying decision-making.
To improve the classification performance in the context of hyperspectral image processing, many works have been developed based on two common strategies, namely the spatial-spectral information integration and the utilization of neural networks. However, both strategies typically require more training data than the cl…
Language models allocate information storage, not collapsing into uniform representations.
Neural collapse occurs in normalized features over a Riemannian manifold.
This work justifies neural collapse under MSE loss and analyzes the optimization landscape.
Effective training of neural networks requires much data. In the low-data regime, parameters are underdetermined, and learnt networks generalise poorly. Data Augmentation alleviates this by using existing data more effectively. However standard data augmentation produces only limited plausible alternative data. Given t…
New method improves transfer and robustness of supervised contrastive learning.
PSC classifier improves HDLSS classification on class-imbalanced data.
Wide neural networks with weight decay exhibit neural collapse.
Study reveals significant performance flips in GLOD using repurposed graph classification datasets.
Generalizes conformal prediction to multiple learnable parameters for efficient prediction sets.
This paper extends neural collapse to class-imbalanced datasets using an unconstrained ReLU feature model.
Proposes a novel classification criterion for high-dimensional data with few samples.
AGOP mechanism explains deep neural collapse in neural networks.
Conditional Random Fields (CRF) are frequently applied for labeling and segmenting sequence data. Morency et al. (2007) introduced hidden state variables in a labeled CRF structure in order to model the latent dynamics within class labels, thus improving the labeling performance. Such a model is known as Latent-Dynamic…
Study shows 'Ordinal Neural Collapse' in deep OR tasks, revealing simple geometric relationships.
We analyze neural collapse in neural networks, showing that features collapse to vertices of a Simplex ETF.
This paper explores how kernel methods can explain data effects on neural collapse.
We derive a new radial link for binary classification under shared elliptical distributions.