The effects of terrain on a system of systems

Approved for public release; distribution is unlimited === Modern combat operations are predominantly joint or combined arms, in which different forces and weapon systems come together to fight as a single entity - as a system composed of many different systems. For land forces, system of systems...

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Main Author: Ong, Cher Howe.
Other Authors: Lucas, Thomas W.
Published: Monterey, California. Naval Postgraduate School 2012
Online Access:http://hdl.handle.net/10945/3787
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spelling ndltd-nps.edu-oai-calhoun.nps.edu-10945-37872015-05-06T03:57:43Z The effects of terrain on a system of systems Ong, Cher Howe. Lucas, Thomas W. Choo, Chwee Seng Naval Postgraduate School (U.S.) Approved for public release; distribution is unlimited Modern combat operations are predominantly joint or combined arms, in which different forces and weapon systems come together to fight as a single entity - as a system composed of many different systems. For land forces, system of systems typically exists at battalion and above-sized forces. This thesis investigates the effects of two types of terrain (urban and rivers) on combat operations. Using a synthesis of various simulation techniques (rapid scenario generation (RSG), red teaming, experimental design, data analysis, and cluster and outlier analysis), 2,827 of these operations are simulated to understand how the individual systems perform and provide insights into the effects of terrain on battle outcomes. With the operational scenario requiring the simulation of force sizes that were the largest ever attempted (battalion and brigade for the urban and river crossing scenarios, respectively) in Map Aware Nonuniform Automata (MANA, an agent-based simulation environment), an RSG tool was developed. This tool allows future MANA users to easily create combat models at the systems level. Results indicate that both types of terrain are disadvantageous for the attacker, especially the urban terrain. It is found that success in the attack relies critically on the survivability of armor protection, specifically to be able to survive at least three good shots from antiarmor weapons. In addition, for both the defender and attacker, responsive communications was identified as a key determinant of battle outcome and a threshold of less than 1.5 to 2 minutes is required for communications to be effective in enabling effective indirect fires. 2012-03-14T17:39:24Z 2012-03-14T17:39:24Z 2008-12 Thesis http://hdl.handle.net/10945/3787 301547763 This publication is a work of the U.S. Government as defined
in Title 17, United States Code, Section 101. As such, it is in the
public domain, and under the provisions of Title 17, United States
Code, Section 105, is not copyrighted in the U.S. Monterey, California. Naval Postgraduate School
collection NDLTD
sources NDLTD
description Approved for public release; distribution is unlimited === Modern combat operations are predominantly joint or combined arms, in which different forces and weapon systems come together to fight as a single entity - as a system composed of many different systems. For land forces, system of systems typically exists at battalion and above-sized forces. This thesis investigates the effects of two types of terrain (urban and rivers) on combat operations. Using a synthesis of various simulation techniques (rapid scenario generation (RSG), red teaming, experimental design, data analysis, and cluster and outlier analysis), 2,827 of these operations are simulated to understand how the individual systems perform and provide insights into the effects of terrain on battle outcomes. With the operational scenario requiring the simulation of force sizes that were the largest ever attempted (battalion and brigade for the urban and river crossing scenarios, respectively) in Map Aware Nonuniform Automata (MANA, an agent-based simulation environment), an RSG tool was developed. This tool allows future MANA users to easily create combat models at the systems level. Results indicate that both types of terrain are disadvantageous for the attacker, especially the urban terrain. It is found that success in the attack relies critically on the survivability of armor protection, specifically to be able to survive at least three good shots from antiarmor weapons. In addition, for both the defender and attacker, responsive communications was identified as a key determinant of battle outcome and a threshold of less than 1.5 to 2 minutes is required for communications to be effective in enabling effective indirect fires.
author2 Lucas, Thomas W.
author_facet Lucas, Thomas W.
Ong, Cher Howe.
author Ong, Cher Howe.
spellingShingle Ong, Cher Howe.
The effects of terrain on a system of systems
author_sort Ong, Cher Howe.
title The effects of terrain on a system of systems
title_short The effects of terrain on a system of systems
title_full The effects of terrain on a system of systems
title_fullStr The effects of terrain on a system of systems
title_full_unstemmed The effects of terrain on a system of systems
title_sort effects of terrain on a system of systems
publisher Monterey, California. Naval Postgraduate School
publishDate 2012
url http://hdl.handle.net/10945/3787
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