Establishment of a System Operating Characteristic for Autonomous Wide Area Search Vehicles

Abstract

The optimal employment of autonomous search and destroy vehicles is addressed. The results apply to air, land, or water vehicles with 1, k, or infinite warheads. The specific scenarios considered involve an air vehicle searching a battle space for stationary targets in the presence of false targets. Encounters are modeled with uniform, Poisson, and normal distributions. Linear and circular search patterns are examined. All relevant parameters are extracted from intelligence information, the sensor performance specification, and the air vehicle performance specification. Analytic system effectiveness measures are derived using applied probability theory. The effectiveness measures derived in this dissertation handle time-varying parameters that characterize the battle space environment and the performance of the system. This allows the formulation and solution of optimization problems that maximize the probability of target attacks while at the same time constraining the probability of false target attacks. Optimal schedules for controlling sensor threshold and area coverage rate during a mission are derived and compared to the constant-parameter results. These schedules establish a system operating characteristic. An increase in system effectiveness is demonstrated when parameters are dynamically controlled during a mission. Plots depicting sensitivity to the constraint on false target attacks and sensitivity to the number of warheads are generated to give decision makers the complete trade space for either designing new systems or operating existing systems.

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Document Details

Document Type
Technical Report
Publication Date
Sep 01, 2005
Accession Number
ADA438400

Entities

People

  • Brian A. Kish

Organizations

  • Air Force Institute of Technology

Tags

Communities of Interest

  • Air Platforms
  • Materials and Manufacturing Processes
  • Sensors
  • Space
  • Weapons Technologies

DTIC Thesaurus Topics

  • Aircrafts
  • Algorithms
  • Differential Equations
  • Engineering
  • Game Theory
  • Mathematical Analysis
  • Military Operations
  • Operations Research
  • Probabilistic Models
  • Probability
  • Probability Density Functions
  • Probability Distributions
  • Probability Hypothesis Density Filters
  • Random Variables
  • Systems Engineering
  • Target Recognition
  • Theorems

Fields of Study

  • Engineering

Readers

  • Adaptive Control and Estimation with Uncertainty in Dynamic Systems.
  • Sensor Fusion and Tracking Systems.

Technology Areas

  • Space
  • Space - Space Objects