Time-Critical Cooperative Path Following of Multiple UAVs over Time-Varying Networks

Abstract

This paper addresses the problem of steering a fleet of UAVs along desired paths while meeting stringent spatial and temporal constraints. A representative example is the challenging mission scenario where the vehicles are tasked to cooperatively execute collision-free maneuvers and arrive at their final destinations at the same time (time-critical operations). In the setup adopted, the vehicles are assigned nominal spatial paths and speed profiles along those. The paths are then appropriately parameterized and the vehicles are requested to execute cooperative path following, rather than open loop trajectory tracking maneuvers. This strategy yields robust behavior against external disturbances by allowing the vehicles to negotiate their speeds along the paths in response to information exchanged over the dynamic inter-vehicle communications network. The paper addresses explicitly the situation where each vehicle transmits its coordination information to only a subset of the other vehicles, as determined by the communications topology. Furthermore, we consider the case where the communications graph that captures the underlying communications topology is disconnected during some interval of time or even fails to be connected at all times. Conditions are given under which the complete time-critical cooperative path-following closed-loop system is stable and yields convergence of a conveniently defined cooperation error to a neighborhood of the origin. Flight test results of a coordinated road search mission demonstrate the efficacy of the multi-UAV cooperative control framework developed in the paper.

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Document Details

Document Type
Technical Report
Publication Date
Jan 01, 2011
Accession Number
ADA554521

Entities

People

  • A. Aguiar
  • A. Pascoal
  • E. Xargay
  • Isaac Kaminer
  • Naira Hovakimyan
  • Reza Ghabcheloo
  • V. Dobrokhodov
  • Venanzio Cichella

Organizations

  • Naval Postgraduate School

Tags

Communities of Interest

  • Air Platforms
  • C4I
  • Space

DTIC Thesaurus Topics

  • Aircrafts
  • Autonomous Systems
  • Autonomous Underwater Vehicles
  • Autonomous Vehicles
  • Closed Loop Systems
  • Cognitive Systems Engineering
  • Command And Control
  • Control Systems
  • Guidance
  • Information Systems
  • Mesh Networks
  • Mobile Ad Hoc Networks
  • Multiagent Systems
  • Network Topology
  • Three Dimensional
  • Unmanned Aerial Vehicles
  • Unmanned Systems

Readers

  • Computer Networking
  • Robotics and Automation.
  • Systems Analysis and Design