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Indoor visual SLAM dataset with various acquisition modalities.

Imad El Bouazzaoui1, Sergio Rodriguez1, Bastien Vincke1

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This study introduces a new indoor Visual Simultaneous Localization And Mapping (V-SLAM) dataset. It evaluates how different camera data types impact V-SLAM accuracy in diverse environments.

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Depth mapIndoor localizationRGB-D camerasRobotics

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Area of Science:

  • Robotics
  • Computer Vision
  • Data Science

Background:

  • Visual Simultaneous Localization and Mapping (V-SLAM) is crucial for autonomous systems.
  • Evaluating V-SLAM performance requires diverse datasets capturing various environmental conditions and sensor modalities.
  • Existing datasets may not fully represent the challenges posed by different acquisition modalities.

Purpose of the Study:

  • To create and present a novel indoor V-SLAM dataset.
  • To assess the influence of different acquisition modalities (RGB, IR, depth) on V-SLAM accuracy.
  • To provide a benchmark for V-SLAM algorithm development and evaluation.

Main Methods:

  • Collected data using an Intel RealSense D435i camera with intrinsic calibration.
  • Acquired sequences using multiple modalities: RGB, IR, and depth images (passive and active stereo).
  • Generated reference trajectories using Structure From Motion (SFM) and Multi View Stereo (MVS) for ground truth.

Main Results:

  • The dataset includes spatially aligned and rectified RGB/IR and depth data.
  • Sequences feature varied environments: low brightness, changing illumination, wide/narrow spaces, and diverse textures.
  • The dataset enables direct comparison of V-SLAM performance across different sensor inputs.

Conclusions:

  • The developed dataset serves as a valuable resource for V-SLAM research.
  • It facilitates a deeper understanding of how acquisition modalities affect V-SLAM system robustness and accuracy.
  • This work contributes to advancing the development of more reliable autonomous navigation systems.