In this work, we investigate the possibility of using inspiration from the self-organizing property of organisms in nature for providing visual representation of an invisible pollutant profile. We present a novel mathematical model of the bacterium and use it to find pollutants in the environment. This model has the capability of exploring the environment to search for sparsely distributed pollutants or food sources and then subsequently exploiting them upon discovery. We also combine the bacterium model in a bacterium-flock algorithm for the purposes of preventing collisions between robots or organisms in addition to providing coverage to a pollutant. By adjusting the velocity of individuals, we show that we are able to control the coverag...
© 2021, ICST Institute for Computer Sciences, Social Informatics and Telecommunications Engineering....
This chapter addresses the key issues of chemical plume mapping and tracing via swarm robots. First,...
In this article we describe implementations of various bio-inspired algorithms for obtaining the che...
In this work, we investigate the possibility of using inspiration from the self-organizing property ...
Inspired by the simplicity of how nature solves its problems, an approach that would enable robotic ...
Inspired by the simplicity of how nature solves its problems, we develop a flocking controller that ...
The book discusses new algorithms capable of searching for, tracking, mapping and providing a visual...
Inspired by the simplicity of how nature solves its problems, a controller based upon the bacteria ...
Inspired by the simplicity of how nature solves its problems, a controller based upon the bacteria c...
Inspired by the simplicity of how nature solves its problems, a controller based upon the bacteria c...
Abstract—Providing a visual image of a hazardous substance such as nerve gas or nuclear radiation us...
The Voronoi partition method can provide a coverage to an area of interest and has gained a lot of p...
Locating gradient sources and tracking them over time has important applications to environmental mo...
Using a network of mobile sensors to track and map a dynamic spatio-temporal process in the environm...
Providing a visual image of a hazardous substance such as nerve gas or nuclear radiation using multi...
© 2021, ICST Institute for Computer Sciences, Social Informatics and Telecommunications Engineering....
This chapter addresses the key issues of chemical plume mapping and tracing via swarm robots. First,...
In this article we describe implementations of various bio-inspired algorithms for obtaining the che...
In this work, we investigate the possibility of using inspiration from the self-organizing property ...
Inspired by the simplicity of how nature solves its problems, an approach that would enable robotic ...
Inspired by the simplicity of how nature solves its problems, we develop a flocking controller that ...
The book discusses new algorithms capable of searching for, tracking, mapping and providing a visual...
Inspired by the simplicity of how nature solves its problems, a controller based upon the bacteria ...
Inspired by the simplicity of how nature solves its problems, a controller based upon the bacteria c...
Inspired by the simplicity of how nature solves its problems, a controller based upon the bacteria c...
Abstract—Providing a visual image of a hazardous substance such as nerve gas or nuclear radiation us...
The Voronoi partition method can provide a coverage to an area of interest and has gained a lot of p...
Locating gradient sources and tracking them over time has important applications to environmental mo...
Using a network of mobile sensors to track and map a dynamic spatio-temporal process in the environm...
Providing a visual image of a hazardous substance such as nerve gas or nuclear radiation using multi...
© 2021, ICST Institute for Computer Sciences, Social Informatics and Telecommunications Engineering....
This chapter addresses the key issues of chemical plume mapping and tracing via swarm robots. First,...
In this article we describe implementations of various bio-inspired algorithms for obtaining the che...