Deep-Learning-Based Indoor Human Following of Mobile Robot Using Color Feature

Author:

Algabri RedhwanORCID,Choi Mun-TaekORCID

Abstract

Human following is one of the fundamental functions in human–robot interaction for mobile robots. This paper shows a novel framework with state-machine control in which the robot tracks the target person in occlusion and illumination changes, as well as navigates with obstacle avoidance while following the target to the destination. People are detected and tracked using a deep learning algorithm, called Single Shot MultiBox Detector, and the target person is identified by extracting the color feature using the hue-saturation-value histogram. The robot follows the target safely to the destination using a simultaneous localization and mapping algorithm with the LIDAR sensor for obstacle avoidance. We performed intensive experiments on our human following approach in an indoor environment with multiple people and moderate illumination changes. Experimental results indicated that the robot followed the target well to the destination, showing the effectiveness and practicability of our proposed system in the given environment.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference41 articles.

1. Spencer: A Socially Aware Service Robot for Passenger Guidance and Help in Busy Airports;Triebel,2016

2. A Mobile Robot for Following, Watching and Detecting Falls for Elderly Care

3. Computer vision for autonomous vehicles: Problems, datasets and state-of-the-art;Janai;arXiv,2017

4. Abnormal behavior recognition for intelligent video surveillance systems: A review

5. Computer vision for sports: Current applications and research topics

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