Cooperative and Intelligent Control of Multi-robot Systems Using Machine Learning

Cooperative and Intelligent Control of Multi-robot Systems Using Machine Learning
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Release: 2005
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This thesis investigates cooperative and intelligent control of autonomous multi-robot systems in a dynamic, unstructured and unknown environment and makes significant original contributions with regard to self-deterministic learning for robot cooperation, evolutionary optimization of robotic actions, improvement of system robustness, vision-based object tracking, and real-time performance. A distributed multi-robot architecture is developed which will facilitate operation of a cooperative multi-robot system in a dynamic and unknown environment in a self-improving, robust, and real-time manner. It is a fully distributed and hierarchical architecture with three levels. By combining several popular AI, soft computing, and control techniques such as learning, planning, reactive paradigm, optimization, and hybrid control, the developed architecture is expected to facilitate effective autonomous operation of cooperative multi-robot systems in a dynamically changing, unknown, and unstructured environment. A machine learning technique is incorporated into the developed multi-robot system for self-deterministic and self-improving cooperation and coping with uncertainties in the environment. A modified Q-learning algorithm termed Sequential Q-learning with Kalman Filtering (SQKF) is developed in the thesis, which can provide fast multi-robot learning. By arranging the robots to learn according to a predefined sequence, modeling the effect of the actions of other robots in the work environment as Gaussian white noise and estimating this noise online with a Kalman filter, the SQKF algorithm seeks to solve several key problems in multi-robot learning. As a part of low-level sensing and control in the proposed multi-robot architecture, a fast computer vision algorithm for color-blob tracking is developed to track multiple moving objects in the environment. By removing the brightness and saturation information in an image and filtering unrelated information based on statistical f.


Cooperative and Intelligent Control of Multi-robot Systems Using Machine Learning
Language: en
Pages:
Authors:
Categories:
Type: BOOK - Published: 2005 - Publisher:

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This thesis investigates cooperative and intelligent control of autonomous multi-robot systems in a dynamic, unstructured and unknown environment and makes sign
Cooperative and Intelligent Control of Multi-robot Systems Using Machine Learning
Language: en
Pages:
Authors:
Categories:
Type: BOOK - Published: 2005 - Publisher:

GET EBOOK

This thesis investigates cooperative and intelligent control of autonomous multi-robot systems in a dynamic, unstructured and unknown environment and makes sign
Multi-Robot Systems: From Swarms to Intelligent Automata
Language: en
Pages: 227
Authors: Alan C. Schultz
Categories: Computers
Type: BOOK - Published: 2013-11-11 - Publisher: Springer Science & Business Media

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In March 2002, the Naval Research Laboratory brought together leading researchers and government sponsors for a three-day workshop in Washington, D.C. on Multi-
Multi-Robot Systems. From Swarms to Intelligent Automata, Volume III
Language: en
Pages: 290
Authors: Lynne E. Parker
Categories: Technology & Engineering
Type: BOOK - Published: 2005-08-15 - Publisher: Springer Science & Business Media

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This proceedings volume documents recent cutting-edge developments in multi-robot systems research. This volume is the result of the Third International worksho
Multi-Robot Systems
Language: en
Pages: 148
Authors:
Categories: Technology & Engineering
Type: BOOK - Published: 2023-12-13 - Publisher: BoD – Books on Demand

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Robotics is an important part of modern engineering involving electricity and electronics, computers, mathematics, and mechanism design. In recent years, in add