Task Analysis and Workload Prediction for the MH-47E Mission and a Comparison with CH-47D Workload Predictions. Volume 2: Appendixes A through N

Abstract

For this research, a mission scenario was used to conduct a comprehensive task analysis for MH-47E operations. The analysis used a top-down approach to identify the phases, functions, and tasks for the mission and identified 5 phases, 15 segments, 73 functions, and 239 tasks. The crew member performing each task was identified, and estimates of the sensory, cognitive, and psychomotor workload associated with the tasks were derived. Estimates of the task durations also were derived. The mission/task/workload analysis data were used to develop a computer model of workload for MH-47E crew members. The model used a bottom-up approach to build mission functions from tasks and mission segments from functions. Decision rules were written to specify the procedure for combining the tasks into functions and the functions into segments. The model permitted an analysis of total workload experienced by the pilot and copilot in the performance of both sequential and concurrent tasks. The predicted workload for the MH-47E pilot and copilot was compared to the CH- 47D baseline workload prediction to determine the impact of the advanced technology on the MH-47E. The comparison indicated little difference in the predicted workload for the pilot and indicated a lower predicted workload for the copilot in the MH-47E. Volume I of the report describes the methodology and summarizes the results of the research. This volume contains the appendixes, which present the workload predictions of the CH-47D model; the MH-47E mission/ task/workload analysis, decision rules, and workload predictions; and a comparison of the predictions from both models.

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Document Details

Document Type
Technical Report
Publication Date
Mar 01, 1991
Accession Number
ADA235249

Entities

People

  • Carl R. Bierbaum
  • David B. Hamilton

Tags

Communities of Interest

  • Air Platforms

DTIC Thesaurus Topics

  • Abstracts
  • Aircrafts
  • Airspeed
  • Computers
  • Display Systems
  • Flight
  • Flight Instruments
  • Flight Paths
  • Inflight
  • Level Flight
  • Navigation
  • Plastic Explosives
  • Radar Images
  • Refueling
  • Refueling In Flight
  • Task Performance And Analysis
  • Workload

Fields of Study

  • Computer science

Readers

  • Aviation Science / Aeronautics.
  • Computational Modeling and Simulation