EMNLP 2024main3 citations

Investigating the Role of Instruction Variety and Task Difficulty in Robotic Manipulation Tasks

Amit Parekh, Nikolas Vitsakis, Alessandro Suglia, Ioannis Konstas

Abstract

Evaluating the generalisation capabilities of multimodal models based solely on their performance on out-of-distribution data fails to capture their true robustness. This work introduces a comprehensive evaluation framework that systematically examines the role of instructions and inputs in the generalisation abilities of such models, considering architectural design, input perturbations across language and vision modalities, and increased task complexity. The proposed framework uncovers the resilience of multimodal models to extreme instruction perturbations and their vulnerability to observational changes, raising concerns about overfitting to spurious correlations. By employing this evaluation framework on current Transformer-based multimodal models for robotic manipulation tasks, we uncover limitations and suggest future advancements should focus on architectural and training innovations that better integrate multimodal inputs, enhancing a model’s generalisation prowess by prioritising sensitivity to input content over incidental correlations.

BibTeX
@inproceedings{parekh-etal-2024-investigating,
    title = "Investigating the Role of Instruction Variety and Task Difficulty in Robotic Manipulation Tasks",
    author = "Parekh, Amit  and
      Vitsakis, Nikolas  and
      Suglia, Alessandro  and
      Konstas, Ioannis",
    editor = "Al-Onaizan, Yaser  and
      Bansal, Mohit  and
      Chen, Yun-Nung",
    booktitle = "Proceedings of the 2024 Conference on Empirical Methods in Natural Language Processing",
    month = nov,
    year = "2024",
    address = "Miami, Florida, USA",
    publisher = "Association for Computational Linguistics",
    url = "https://aclanthology.org/2024.emnlp-main.1080/",
    doi = "10.18653/v1/2024.emnlp-main.1080",
    pages = "19389--19424"
}
Investigating the Role of Instruction Variety and Task Difficulty in Robotic Manipulation Tasks · EMNLP 2024