The traditional environment maps built by mobile robots include both metric ones and topological ones. These maps are navigation-oriented and not adequate for service robots to interact with or serve human users who normally rely on the conceptual knowledge or semantic contents of the environment. Therefore, the construction of semantic maps becomes necessary for building an effective human-robot interface for service robots. This paper reviews recent research and development in the field of visual-based semantic mapping. The main focus is placed on how to extract semantic information from visual data in terms of feature extraction, object/place recognition and semantic representation methods
Robotic mapping is the process of automatically constructing an environment representation using mob...
Robotic mapping is the process of automatically constructing an environment representation using mob...
We propose a semantic map representation and human-like navigation strategies for the mobile robot w...
The traditional environment maps built by mobile robots include both metric ones and topological one...
The traditional environment maps built by mobile robots include both metric ones and topological one...
Sensing and mapping its surroundings is an essential requirement for a mobile robot. Geometric maps ...
In this thesis, semantic mapping is understood to be the process of putting a tag or label on object...
In order to operate and to understand human commands, robots must be provided with a knowledge repre...
Integration of human semantics plays an increasing role in robotics tasks such as mapping, localizat...
Integration of human semantics plays an increasing role in robotics tasks such as mapping, localizat...
Human Robot Interaction is a key enabling feature to support the introduction of robots in everyday ...
Human Robot Interaction is a key enabling feature to support the introduction of robots in everyday ...
Human Robot Interaction is a key enabling feature to support the introduction of robots in everyday ...
Human Robot Interaction is a key enabling feature to support the introduction of robots in everyday ...
Although much progress has been made in the field of robotic mapping, many challenges remain includi...
Robotic mapping is the process of automatically constructing an environment representation using mob...
Robotic mapping is the process of automatically constructing an environment representation using mob...
We propose a semantic map representation and human-like navigation strategies for the mobile robot w...
The traditional environment maps built by mobile robots include both metric ones and topological one...
The traditional environment maps built by mobile robots include both metric ones and topological one...
Sensing and mapping its surroundings is an essential requirement for a mobile robot. Geometric maps ...
In this thesis, semantic mapping is understood to be the process of putting a tag or label on object...
In order to operate and to understand human commands, robots must be provided with a knowledge repre...
Integration of human semantics plays an increasing role in robotics tasks such as mapping, localizat...
Integration of human semantics plays an increasing role in robotics tasks such as mapping, localizat...
Human Robot Interaction is a key enabling feature to support the introduction of robots in everyday ...
Human Robot Interaction is a key enabling feature to support the introduction of robots in everyday ...
Human Robot Interaction is a key enabling feature to support the introduction of robots in everyday ...
Human Robot Interaction is a key enabling feature to support the introduction of robots in everyday ...
Although much progress has been made in the field of robotic mapping, many challenges remain includi...
Robotic mapping is the process of automatically constructing an environment representation using mob...
Robotic mapping is the process of automatically constructing an environment representation using mob...
We propose a semantic map representation and human-like navigation strategies for the mobile robot w...