Simulation of the autonomous combat systems robot optical detection system

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May 8, 2012 | History

Simulation of the autonomous combat systems robot optical detection system

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NPS Combat Systems students learn systems engineering through a series of courses in design, development, implementation, and testing and evaluation. In the last of this series of courses, students design an autonomous robot capable of searching, acquiring, and tracking another autonomous robot having similar capabilities. The project culminates in the Robot Wars Competition, where groups of students have their robots battle each other. This thesis is the second in a series designed to realistically simulate the robot wars battles. The end-to-end functionality of the optical detection system is modeled, and the necessary physics are implemented for effective simulation and depiction. The model uses a transfer function approach and includes all physical processes, from initial optical beacon emission to final digital control signal. Exercising the model over time using realistic robot inputs yields a simulation that closely replicates real behavior. A Virtual Reality Modeling Language (VRML) program uses data files of each Simbot's movement to generate a 3- dimensional animated scene of the detection sequence. This implemented optical model effectively simulates the SE 3015 robot optical detection system and can reproduce an actual detection and tracking sequence between two robots.

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Edition Availability
Cover of: Simulation of the autonomous combat systems robot optical detection system
Simulation of the autonomous combat systems robot optical detection system
1997, Naval Postgraduate School, Available from National Technical Information Service
in English

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Book Details


Published in

Monterey, Calif, Springfield, Va

Edition Notes

"December 1997."

Thesis advisor(s): Gordon Schacher, Donald Brutzman.

Thesis (M.S. in Applied Physics)--Naval Postgraduate School, December 1997.

Includes bibliographical references (p. 131).

Approved for public release; distribution unlimited.

Also available online.

Mode of access: World Wide Web.

System requirements: Adobe Acrobat reader.

The Physical Object

Pagination
xv, 134 p. ;
Number of pages
134

ID Numbers

Open Library
OL25303033M
Internet Archive
simulationofauto00mcne
OCLC/WorldCat
640498364

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May 8, 2012 Edited by ImportBot import new book
May 7, 2012 Created by ImportBot import new book