Mission Stream Analysis - Delta Analytic Model. Revision

Abstract

Weapon system program development problems, as evidenced by significant cost increases and schedule delays, highlight the need to improve both the discipline of the development and test processes and the depth of analytic oversight provided for the Department of Defense (DoD) acquisition process. To address these needs, this paper provides two tools to supplement current DoD requirements development and test planning processes. The "Delta Analytic Model" and companion "Mission Stream Analysis" are cross-domain analytic tools for enhancing the foundational analysis and the mission effectiveness outcome on major defense acquisition programs. The Delta Analytic Model provides an approach for identifying disparate interpretations of the systems requirements and metrics in the analytic foundation so that the differences can be eliminated; i.e., the model helps minimize the difference (delta) in interpretations of requirements, performance parameters, and metrics by the various communities (design, development, and test). Mission Stream Analysis aids in decomposing the mission and system capabilities/requirements into system technical performance, operator workload requirements, and metrics that contribute to demonstrating mission effectiveness.

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Document Details

Document Type
Technical Report
Publication Date
Sep 01, 2014
Accession Number
ADA611935

Entities

People

  • James A. Forrest
  • James R. Dominy
  • Marion L. Williams
  • Patricia F. Bronson

Organizations

  • Institute for Defense Analyses

Tags

Communities of Interest

  • Engineered Resilient Systems
  • Human Systems
  • Weapons Technologies

DTIC Thesaurus Topics

  • Acquisition
  • Aircrafts
  • Communities
  • Cross Domain
  • Department Of Defense
  • Electronic Countermeasures
  • Engineering
  • Engineers
  • Fighter Aircraft
  • Life Cycle Management
  • Life Cycles
  • Military Acquisition
  • Systems Engineering
  • Test And Evaluation
  • Unmanned Aerial Vehicles
  • Weapon Systems
  • Workload

Fields of Study

  • Computer science
  • Engineering

Readers

  • Computational Modeling and Simulation
  • Defense Acquisition Program Management
  • Software Engineering.