Operations Analysis of Fleet Battle Experiments Using the Battlespace Information War Methodology

Abstract

This report outlines an approach for quantitative operations analysis of aspects of Fleet Battle Experiments (FBEs) using the methodology underlying the Battlespace Information War (BAT/IW) analytical tool. The general approach of this analysis methodology is to focus on a specific experimental initiative from one or more FBEs, such as Time Critical Targeting (TCT). BAT/IW models are then tailored to the experimental situation using actual data obtained from one or more experiments and the experiment systems architecture. After the models and actual data are reconciled, further analysis tasks are undertaken, such as predictions of the effects of attack intensity, and/or of C4ISR response time reduction. BAT/IW modeling helps analyze and understand the system-level impact of sensor data quality, including timeliness, as one contributor to total operation/campaign success. BAT/IW modeling also accounts for the latency involved in processing information, including communications delays, decision time, waiting, etc. An example is developed to show how operational data obtained during FBE Foxtrot can be quantitatively analyzed to indicate important sensitivities.

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Document Details

Document Type
Technical Report
Publication Date
Oct 01, 2000
Accession Number
ADA385288

Entities

People

  • Donald P. Gaver Jr.
  • Patricia A. Jacobs
  • Steven E. Pilnick

Organizations

  • Naval Postgraduate School

Tags

Communities of Interest

  • C4I
  • Materials and Manufacturing Processes
  • Weapons Technologies

DTIC Thesaurus Topics

  • Basic Programming Language
  • Battlespace
  • Classification
  • Computers
  • Equations
  • Information Processing
  • Low Resolution
  • Naval Warfare
  • Navy
  • Network Centric Warfare
  • Operations Research
  • Sensitivity
  • Targeting
  • Targets
  • Time Sensitive Targets
  • Warfare
  • Weapon Systems

Readers

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