A key objective of Robotics is the autonomous navigation of mobile robots through an obstacle field. Inspired by echolocating bats, we developed a two-part navigation system consisting of obstacle detection through echolocation and motion planning. The first part relies upon a binaural sonar system, which emits ultrasonic pulses and then determines the interaural level difference (ILD) of the returning echoes to infer obstacle locations. Next, the Openspace motion planner computes the best direction of travel based on the locations of the target and the detected obstacles. We implemented this navigation system on a mobile platform, which repeatedly computes the safest direction of travel and moves accordingly, ultimately generating a real-t...
In order for mobile robots to navigate safely in unmapped and dynamic environments they must perceiv...
Integration of skills into an autonomous robot that performs a complex task is described. Time const...
A strategy typically employed for mobile robot navigation in an unknown environment is to follow a n...
Most objects and vegetation making up the habitats of echolocating bats return a multitude of overla...
Robots are used for a variety of tasks that require a complex series of actions, such as understandi...
Echolocating bats rely on active sound emission (echolocation) for mapping novel environments and na...
Echolocating bats rely on active sound emission (echolocation) for mapping novel environments and na...
<div><p>Bat echolocation is an ability consisting of many subtasks such as navigation, prey detectio...
A bat can identify its position within an environment using ultrasound chirps to perform echolocatio...
This paper presents the development of an experimental method for obstacle detection using modified ...
Bats are known for their ability to pursue a goal while avoiding obstacles in a cluttered environmen...
This paper proposes an exploration method for robots equipped with a set of sonar sensors that does ...
We propose to combine a biomimetic navigation model which solves a simultaneous localization and map...
<div><p>We propose to combine a biomimetic navigation model which solves a simultaneous localization...
Most current sonar systems for mobile robots only yield time of flight distance information produced...
In order for mobile robots to navigate safely in unmapped and dynamic environments they must perceiv...
Integration of skills into an autonomous robot that performs a complex task is described. Time const...
A strategy typically employed for mobile robot navigation in an unknown environment is to follow a n...
Most objects and vegetation making up the habitats of echolocating bats return a multitude of overla...
Robots are used for a variety of tasks that require a complex series of actions, such as understandi...
Echolocating bats rely on active sound emission (echolocation) for mapping novel environments and na...
Echolocating bats rely on active sound emission (echolocation) for mapping novel environments and na...
<div><p>Bat echolocation is an ability consisting of many subtasks such as navigation, prey detectio...
A bat can identify its position within an environment using ultrasound chirps to perform echolocatio...
This paper presents the development of an experimental method for obstacle detection using modified ...
Bats are known for their ability to pursue a goal while avoiding obstacles in a cluttered environmen...
This paper proposes an exploration method for robots equipped with a set of sonar sensors that does ...
We propose to combine a biomimetic navigation model which solves a simultaneous localization and map...
<div><p>We propose to combine a biomimetic navigation model which solves a simultaneous localization...
Most current sonar systems for mobile robots only yield time of flight distance information produced...
In order for mobile robots to navigate safely in unmapped and dynamic environments they must perceiv...
Integration of skills into an autonomous robot that performs a complex task is described. Time const...
A strategy typically employed for mobile robot navigation in an unknown environment is to follow a n...