Insects are able to navigate reliably between food and nest using only visual information. This behavior has inspired many models of visual landmark guidance, some of which have been tested on autonomous robots. The majority of these models work by comparing the agent's current view with a view of the world stored when the agent was at the goal. The region from which agents can successfully reach home is therefore limited to the goal's visual locale, that is, the area around the goal where the visual scene is not radically different to the goal position. Ants are known to navigate over large distances using visually guided routes consisting of a series of visual memories. Taking inspiration from such route navigation, we propose a framework...
Desert ants returning from a foraging trip to their nest navigate both by path integration and by vi...
This abstract summarises a model of route navigation inspired by the behaviour of ants presented ful...
The ability to navigate in a complex environment is crucial for both animals and robots. Many animal...
It is known that ants learn long visually guided routes through complex terrain. However, the mechan...
In this paper we propose a model of visually guided route navigation in ants that captures the known...
Giving robots the ability to move around autonomously in various real-world environments has long be...
In this paper we propose a model of visually guided route navigation in ants that captures the known...
The use of visual information for navigation appears to be a universal strategy for sighted animals,...
This abstract summarises a model of route navigation inspired by the behaviour of ants presented ful...
The desert ant Cataglyphis fortis has at least three types of navigational strategy that can guide i...
The ability of insects to visually navigate long routes to their nest has provided inspiration to en...
Insect-Inspired models of visual navigation, that operate by scanning for familiar views of the worl...
Studies of insect navigation have demonstrated that insects possess an interesting and sophisticated...
Visual navigation is a critical behaviour formanyanimals, and it has been particularly well studied...
Humans have long marveled at the ability of animals to navigate swiftly, accurately, and across long...
Desert ants returning from a foraging trip to their nest navigate both by path integration and by vi...
This abstract summarises a model of route navigation inspired by the behaviour of ants presented ful...
The ability to navigate in a complex environment is crucial for both animals and robots. Many animal...
It is known that ants learn long visually guided routes through complex terrain. However, the mechan...
In this paper we propose a model of visually guided route navigation in ants that captures the known...
Giving robots the ability to move around autonomously in various real-world environments has long be...
In this paper we propose a model of visually guided route navigation in ants that captures the known...
The use of visual information for navigation appears to be a universal strategy for sighted animals,...
This abstract summarises a model of route navigation inspired by the behaviour of ants presented ful...
The desert ant Cataglyphis fortis has at least three types of navigational strategy that can guide i...
The ability of insects to visually navigate long routes to their nest has provided inspiration to en...
Insect-Inspired models of visual navigation, that operate by scanning for familiar views of the worl...
Studies of insect navigation have demonstrated that insects possess an interesting and sophisticated...
Visual navigation is a critical behaviour formanyanimals, and it has been particularly well studied...
Humans have long marveled at the ability of animals to navigate swiftly, accurately, and across long...
Desert ants returning from a foraging trip to their nest navigate both by path integration and by vi...
This abstract summarises a model of route navigation inspired by the behaviour of ants presented ful...
The ability to navigate in a complex environment is crucial for both animals and robots. Many animal...