Semantics for Robotic Mapping, Perception and Interaction: A Survey
Sourav Garg, Niko S\"underhauf, Feras Dayoub, Douglas Morrison,, Akansel Cosgun, Gustavo Carneiro, Qi Wu, Tat-Jun Chin, Ian Reid, Stephen, Gould, Peter Corke, Michael Milford

TL;DR
This survey provides a comprehensive overview of semantics in robotics, covering foundational concepts, research categories, and applications like mapping, navigation, and interaction, highlighting recent advances and practical considerations.
Contribution
It introduces a new taxonomy for semantics research in robotics and offers an updated, broad overview of the field since previous surveys.
Findings
Semantics are crucial for advanced robotic perception and interaction.
Recent technological advances have significantly expanded semantics applications.
The survey identifies key research areas and practical enablers in robotics semantics.
Abstract
For robots to navigate and interact more richly with the world around them, they will likely require a deeper understanding of the world in which they operate. In robotics and related research fields, the study of understanding is often referred to as semantics, which dictates what does the world "mean" to a robot, and is strongly tied to the question of how to represent that meaning. With humans and robots increasingly operating in the same world, the prospects of human-robot interaction also bring semantics and ontology of natural language into the picture. Driven by need, as well as by enablers like increasing availability of training data and computational resources, semantics is a rapidly growing research area in robotics. The field has received significant attention in the research literature to date, but most reviews and surveys have focused on particular aspects of the topic:…
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