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A Multimodal Anomaly Detector for Robot-Assisted Feeding Using an LSTM-based Variational Autoencoder

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arxiv 1711.00614 v1 pith:VEW6CA5G submitted 2017-11-02 cs.RO cs.LG

classification cs.ROcs.LG
keywords detectormultimodalsignalsanomaliesanomalyautoencoderexecutionsfeeding
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The detection of anomalous executions is valuable for reducing potential hazards in assistive manipulation. Multimodal sensory signals can be helpful for detecting a wide range of anomalies. However, the fusion of high-dimensional and heterogeneous modalities is a challenging problem. We introduce a long short-term memory based variational autoencoder (LSTM-VAE) that fuses signals and reconstructs their expected distribution. We also introduce an LSTM-VAE-based detector using a reconstruction-based anomaly score and a state-based threshold. For evaluations with 1,555 robot-assisted feeding executions including 12 representative types of anomalies, our detector had a higher area under the receiver operating characteristic curve (AUC) of 0.8710 than 5 other baseline detectors from the literature. We also show the multimodal fusion through the LSTM-VAE is effective by comparing our detector with 17 raw sensory signals versus 4 hand-engineered features.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. KoopAGRU: A Koopman-based Anomaly Detection in Time-Series using Gated Recurrent Units

    cs.LG 2025-01 conditional novelty 5.0 of 10

    KoopAGRU, a GRU-based Koopman model with FFT time-variant/invariant decomposition, reports an average F1 of 90.88% on five anomaly detection benchmarks, exceeding cited baselines.

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