2015Unpublished venueRequires access

Towards Development of Reliable Mobile Robot Navigation System

Denis Shepelev, A. Ustyuzhanin

Open publisher page 1 citations

Abstract

This paper presents a combined control system for mobile robot. The developed system allows to teleoperate a mobile robot and switches to autonomous movement when the connection with the mobile robot is lost. To create this control system the comparative analysis of existing sensors was performed, based on this analysis the sensors for localization robot were chosen, the virtual model of the 4-wheeled mobile robot and a controller were developed. Then based on ROS(Robot Operating System) the combined control system was created.

About this research paper

What this paper is about

This paper presents a combined control system for mobile robot. The developed system allows to teleoperate a mobile robot and switches to autonomous movement when the connection with the mobile robot is lost. To create this control system the comparative analysis of existing sensors was performed, based on this analysis the sensors for localization robot were chosen, the virtual model of the 4-wheeled mobile robot and a controller were developed. Then based on ROS(Robot Operating System) the combined control system was created.

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OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Method / approach

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Available abstract

This paper presents a combined control system for mobile robot. The developed system allows to teleoperate a mobile robot and switches to autonomous movement when the connection with the mobile robot is lost. To create this control system the comparative analysis of existing sensors was performed, based on this analysis the sensors for localization robot were chosen, the virtual model of the 4-wheeled mobile robot and a controller were developed. Then based on ROS(Robot Operating System) the combined control system was created.

Key concepts: Mobile robot, Mobile robot navigation, Robot control, Robot, Computer science, Controller (irrigation), Control system, Control engineering

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