A Model-Based Architecture Approach to Ship Design Linking Capability Needs to System Solutions

Abstract

This thesis proposes a model-based systems engineering approach to ship design for the purpose of improving the Navy's ship design processes. It links capability needs to the end solution by utilizing system architecture development based on capability requirements to allow for enhanced traceability, verification, and validation throughout the design process. Modeling tools are used to explore mission effectiveness against projected threats and create a design space for weighing tradeoffs early in the conceptual design phase. For demonstration of this approach, a simple design reference mission is created and a functional architecture is described. The capability of a potential design solution (assumed to have the physical architecture of a ship) is modeled to evaluate logical behavior and mission effectiveness. These models aid in the formation of physical design specifications, which are incorporated as inputs to a ship synthesis model. Several alternatives can be created for comparison that reveals the costs associated with various levels of capability giving decision-makers to ample information to consider.

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Document Details

Document Type
Technical Report
Publication Date
Jun 01, 2012
Accession Number
ADA562905

Entities

People

  • Jillian E. Bahlman

Organizations

  • Naval Postgraduate School

Tags

Communities of Interest

  • Ground and Sea Platforms
  • Sensors
  • Weapons Technologies

DTIC Thesaurus Topics

  • Control Systems
  • Detection
  • Electronic Countermeasures
  • Engineers
  • Fire Control Systems
  • Military Science
  • Model Based Systems Engineering
  • Naval Architecture
  • Naval Operations
  • Naval Vessels (Combatant)
  • Radar
  • Ship Design
  • Standards
  • Systems Engineering
  • United States
  • Warfare
  • Weapon Control

Readers

  • Database Systems and Applications
  • Systems Analysis and Design
  • Team-Based Human-Centered Cognitive Task Decision Making and Information Performance.

Technology Areas

  • Space