Counterfactual Explanation for Auto-Encoder Based Time-Series Anomaly Detection

Fuente: arXiv
Guardado en:
Detalles Bibliográficos
Autores principales: Srinivasan, Abhishek, Ravi, Varun Singapuri, Andresen, Juan Carlos, Holst, Anders
Formato: Preprint
Publicado: 2025
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866929658014990336
author Srinivasan, Abhishek
Ravi, Varun Singapuri
Andresen, Juan Carlos
Holst, Anders
author_facet Srinivasan, Abhishek
Ravi, Varun Singapuri
Andresen, Juan Carlos
Holst, Anders
contents The complexity of modern electro-mechanical systems require the development of sophisticated diagnostic methods like anomaly detection capable of detecting deviations. Conventional anomaly detection approaches like signal processing and statistical modelling often struggle to effectively handle the intricacies of complex systems, particularly when dealing with multi-variate signals. In contrast, neural network-based anomaly detection methods, especially Auto-Encoders, have emerged as a compelling alternative, demonstrating remarkable performance. However, Auto-Encoders exhibit inherent opaqueness in their decision-making processes, hindering their practical implementation at scale. Addressing this opacity is essential for enhancing the interpretability and trustworthiness of anomaly detection models. In this work, we address this challenge by employing a feature selector to select features and counterfactual explanations to give a context to the model output. We tested this approach on the SKAB benchmark dataset and an industrial time-series dataset. The gradient based counterfactual explanation approach was evaluated via validity, sparsity and distance measures. Our experimental findings illustrate that our proposed counterfactual approach can offer meaningful and valuable insights into the model decision-making process, by explaining fewer signals compared to conventional approaches. These insights enhance the trustworthiness and interpretability of anomaly detection models.
format Preprint
id arxiv_https___arxiv_org_abs_2501_02069
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Counterfactual Explanation for Auto-Encoder Based Time-Series Anomaly Detection
Srinivasan, Abhishek
Ravi, Varun Singapuri
Andresen, Juan Carlos
Holst, Anders
Machine Learning
The complexity of modern electro-mechanical systems require the development of sophisticated diagnostic methods like anomaly detection capable of detecting deviations. Conventional anomaly detection approaches like signal processing and statistical modelling often struggle to effectively handle the intricacies of complex systems, particularly when dealing with multi-variate signals. In contrast, neural network-based anomaly detection methods, especially Auto-Encoders, have emerged as a compelling alternative, demonstrating remarkable performance. However, Auto-Encoders exhibit inherent opaqueness in their decision-making processes, hindering their practical implementation at scale. Addressing this opacity is essential for enhancing the interpretability and trustworthiness of anomaly detection models. In this work, we address this challenge by employing a feature selector to select features and counterfactual explanations to give a context to the model output. We tested this approach on the SKAB benchmark dataset and an industrial time-series dataset. The gradient based counterfactual explanation approach was evaluated via validity, sparsity and distance measures. Our experimental findings illustrate that our proposed counterfactual approach can offer meaningful and valuable insights into the model decision-making process, by explaining fewer signals compared to conventional approaches. These insights enhance the trustworthiness and interpretability of anomaly detection models.
title Counterfactual Explanation for Auto-Encoder Based Time-Series Anomaly Detection
topic Machine Learning
url https://arxiv.org/abs/2501.02069