DocumentCode
263332
Title
Maritime air defence firing tactics
Author
Miah, Suruz ; Bao Nguyen ; Spinello, Davide ; Gueaieb, Wail
Author_Institution
Centre for Operational Res. & Anal., Defence R&DCanada, Ottawa, ON, Canada
fYear
2014
fDate
14-17 Dec. 2014
Firstpage
1
Lastpage
9
Abstract
A typical firing doctrine is the Shoot-Look-Shoot tactic. In this tactic, the defence launches a salvo of interceptors against the targets (Shoot), assesses the outcomes of the engagements (Shoot-Look), and launches another salvo (Shoot-Look-Shoot) if time and the inventory of interceptors permit. In the open literature, it is often assumed that the targets are identical. This is not always true as targets come in with different ranges, speeds, sizes, cross sections etc. In this paper, we consider two types of targets. Each type of target has a different number engagement opportunities due to their ranges and speeds. Through the use of dynamic programming, a genetic algorithm, and a recursive generating function, we determine the probability of raid annihilation (the probability of neutralizing all of the targets) for two different Shoot-Look-Shoot (SLS) tactics. The first SLS tactic is based on variable size salvos and maximizes the probability of raid annihilation (PRA) for heterogeneous targets. The second SLS tactic is based on fixed-size salvos and is robust as it is independent of the number and types of targets. Theoretical results are validated through some computer simulations.
Keywords
dynamic programming; genetic algorithms; military aircraft; probability; weapons; PRA; SLS tactics; computer simulations; dynamic programming; fixed-size salvos; genetic algorithm; heterogeneous targets; interceptors; maritime air defence firing tactics; probability of raid annihilation; recursive generating function; shoot-look-shoot tactic; Boundary conditions; Dynamic programming; Genetic algorithms; Indexes; Sociology; Statistics; Vectors;
fLanguage
English
Publisher
ieee
Conference_Titel
Computational Intelligence for Security and Defense Applications (CISDA), 2014 Seventh IEEE Symposium on
Conference_Location
Hanoi
Type
conf
DOI
10.1109/CISDA.2014.7035639
Filename
7035639
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