Evaluation of Future Unmanned Underwater Vehicle Capabilities in an Automated Computer-Aided Wargame

Abstract

The U.S. Navy is restructuring its fleet architecture. Assessments undertaken as part of the restructuring process revealed a lack of construction sites to support increasing fleet size. As such, the Navy is exploring the feasibility of using unmanned underwater vehicle (UUV) platforms to supplement the fleet. Current UUVs provide minimal surveillance and mine detection capabilities; one solution is adding offensive and enhanced detection capabilities to UUV platforms. This study utilized a model-based systems engineering (MBSE) approach in the Joint Theater Simulation Level Global Operations environment to explore the effects of UUVs with enhanced capabilities. The approach included the process of developing the conceptual prototype, concept of operations, measures of effectiveness, varying UUV factors (speed, composition, and sonar type), and designs of experiment. After analyzing the output of 540 simulation runs, the results provided evidence that all three factors are significant in UUV operational performance and showed that using advanced UUVs increase task forces capabilities. Furthermore, the experimentation reveals strong correlations between UUV composition and speed for detection and engagements, and confirmed using active sonar as advantageous in combat, thereby shaping the trade-space for UUV features. This study demonstrates the utility of MBSE for conducting feasibility assessments for the future fleet.

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Document Details

Document Type
Technical Report
Publication Date
Dec 01, 2018
Accession Number
AD1069835

Entities

People

  • Herman Wong

Organizations

  • Naval Postgraduate School

Tags

Communities of Interest

  • Air Platforms
  • Autonomy
  • Ground and Sea Platforms

DTIC Thesaurus Topics

  • Boats
  • Cognitive Systems Engineering
  • Data Mining
  • Databases
  • Experimental Design
  • Information Science
  • National Security
  • Naval Operations
  • Naval Warfare
  • Navy
  • Regression Analysis
  • Systems Engineering
  • Underwater Vehicles
  • Unmanned Aerial Vehicles
  • Unmanned Systems
  • Unmanned Underwater Vehicles
  • Unmanned Vehicles

Readers

  • Computational Modeling and Simulation
  • Enterprise Information Systems Architecture and Joint Command Capability Interoperability Support.
  • Systems Analysis and Design

Technology Areas

  • Autonomy
  • Autonomy - UAVs
  • Space