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Georgia Southern University

Neuromodulation Based Control of an Autonomous Robot

Abstract

dc:description.abstract

<p>The neuromodulatory systems in the brain of a vertebrate help regulate its decision making in response to the sensory signals from the environment. These neuromodulators influence a vertebrate’s behaviors like focusing attention, cautious risk-aversion and curiosity-seeking exploration. The main objective of this thesis was to study and implement a neuronal model inspired by the neuromodulatory systems on a relatively simple autonomous robot demonstrating its ability to adapt to changes in the environment. This work presents a control approach based on vertebrate neuromodulation and its implementation on an iRobot Create platform. Three of the built-in sensors, namely, bump, dock beam, and battery state of Create were used in this study. In addition to these, five ultrasonic ping sensors were mounted in the front of the robot for measuring the robot distance from a nearby object like obstacle or wall. The data from ping sensors were transmitted via an Arduino board to Matlab workspace of a laptop through serial interface. The neural network incorporated three types of neurons- cholinergic and noradrenergic (ACh/NE) neurons for attention focusing and action selection, dopaminergic (DA) neurons for curiosity-seeking, and serotonergic (5-HT) neurons for risk aversion behavior. The robot was run through Matlab under three different behavioral modes, namely, risk aversive, risk-taking, and distracted, all inside the clutter environment of a lab space. However, unlike the traditional neural networks, the neuromodulatory model did not need any pre-training. Instead, the system learnt from its sensory inputs and followed the behavioral facets of a living organism. The robot showed very interesting behavioral patterns which were analyzed and fully justified. The details of algorithm development, the experimental setup and implementation results under different conditions are presented along with a discussion on the scope of further work.</p>

Degree

thesis:*
Name thesis:degree_name
Master of Science in Applied Engineering (M.S.A.E.)
Level thesis:degree_level
Thesis (restricted to Georgia Southern)
Discipline thesis:degree_discipline
Department of Mathematical Sciences
Year dc:date.available
2013

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Prince, Akimul
Contributors dc:contributor
  • Jordan Shropshire
  • Yong Zhu

Subjects

dc:subject × 8

Identifiers

dc:identifier.*
Repository record dc:identifier
https://digitalcommons.georgiasouthern.edu/etd/802
OAI identifier oai:identifier
oai:digitalcommons.georgiasouthern.edu:etd-1809

Chain of custody

source
Harvested from
Georgia Southern University
Base URL
digitalcommons.georgiasouthern.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Prince, Akimul. Neuromodulation Based Control of an Autonomous Robot. Thesis (restricted to Georgia Southern) thesis, 2013. https://digitalcommons.georgiasouthern.edu/etd/802