Title :
Distributed Multitarget Search and Track Assignment With Consensus-Based Coordination
Author :
Severson, Tracie A. ; Paley, Derek A.
Author_Institution :
Dept. of Weapons & Syst. Eng., U.S. Naval Acad., Annapolis, MD, USA
Abstract :
This paper presents a distributed, consensus-based approach to optimize radar resource management for ballistic missile surveillance and tracking. Radar search, target detection, and target tracking are described using a nonlinear, three-dimensional model. Target tracking includes an estimate of the resources required to reduce target uncertainty to support engagements. Each radar determines its preferred radar-to-target assignment using a probabilistic optimization algorithm that balances radar loading and minimizes the total radar usage. Under heightened track demand, radar search sectors degrade symmetrically about a designated threat axis. A unique global radar-to-target assignment that is robust to resource estimation error is generated by a distributed consensus algorithm. Performance of the coordinated algorithm is compared with uncoordinated alternatives via Monte Carlo simulations.
Keywords :
Monte Carlo methods; missiles; optimisation; radar tracking; search radar; Monte Carlo simulations; ballistic missile surveillance; ballistic missile tracking; consensus based coordination; distributed consensus algorithm; distributed multitarget search; global radar-to-target assignment; heightened track demand; probabilistic optimization algorithm; radar loading; radar resource management; radar search; radar search sectors; radar usage; resource estimation error; target detection; target tracking; track assignment; Measurement uncertainty; Radar tracking; Resource management; Sensors; Target tracking; Uncertainty; Cooperative systems; graph theory; networks; optimization methods; radar;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2014.2355200