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Journal ArticleDOI

Cooperative Multiple-Model Adaptive Guidance for an Aircraft Defending Missile

TLDR
In this article, a cooperative guidance law for a defender missile protecting an aerial target from an incoming homing missile is presented, where the defender knows the future evasive maneuvers to be performed by the protected target and thus can anticipate the maneuvers it will induce on the incoming Homing missile.
Abstract
A cooperative guidance law, for a defender missile protecting an aerial target from an incoming homing missile, is presented. The filter used is a nonlinear adaptation of a multiple model adaptive estimator, in which each model represents a possible guidance law and guidance parameters of the incoming homing missile. Fusion of measurements from both the defender missile and protected aircraft is performed. A matched defender’s missile guidance law is optimized to the identified homing missile guidance law. It utilizes cooperation between the aerial target and the defender missile. The cooperation stems from the fact that the defender knows the future evasive maneuvers to be performed by the protected target and thus can anticipate the maneuvers it will induce on the incoming homing missile. Moreover, the target performs a maneuver that minimizes the control effort requirements from the defender. The estimator and guidance law are combined in a multiple model adaptive control configuration. Simulation results show that combining the estimations with the proposed optimal guidance law, that utilizes cooperation between the defending missile and protected target, yields hit-to-kill closed loop performance with very low control effort. This facilitates the use of relatively small defending missiles to protect aircrafts from homing missiles.

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Citations
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Journal ArticleDOI

A Survey on Aerial Swarm Robotics

TL;DR: The main sections of this paper focus on major results covering trajectory generation, task allocation, adversarial control, distributed sensing, monitoring, and mapping, and dynamic modeling and conditions for stability and controllability that are essential in order to achieve cooperative flight and distributed sensing.
Journal ArticleDOI

Optimal Cooperative Pursuit and Evasion Strategies Against a Homing Missile

TL;DR: It is shown how the target can lure in the attacker, allowing its defender to intercept the attacking missile even in scenarios in which the defender's maneuverability is at a disadvantage compared with the attacking ballistic missile.
Journal ArticleDOI

Cooperative Differential Games Strategies for Active Aircraft Protection from a Homing Missile

TL;DR: In this paper, a linear quadratic differential game formulation for arbitrary-order linear players' dynamics in the continuous and discrete domains is derived for a team composed of two agents, where the target aircraft performs evasive maneuvers and launches a defending missile to intercept the homing missile.
Journal ArticleDOI

Line-of-Sight Interceptor Guidance for Defending an Aircraft

TL;DR: In this paper, the authors defined the following components of an evasive maneuver component normal to the target-missile line of sight: amp, ad, am, target, defender, and missile lateral accelerations, respectively at max, ad max, am max, max, and am max = target, defenders, and missiles maximum lateral acceleration.
Journal ArticleDOI

Cooperative Optimal Guidance Laws for Imposing a Relative Intercept Angle

TL;DR: In this article, optimal control-based cooperative guidance laws for intercepting a high-value target (such as a ballistic missile) by a team of cooperating interceptors arriving from different directions are presented.
References
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Book

Applied optimal control

Book

Estimation with Applications to Tracking and Navigation

TL;DR: Estimation with Applications to Tracking and Navigation treats the estimation of various quantities from inherently inaccurate remote observations using a balanced combination of linear systems, probability, and statistics.
Book

Differential games

Rufus Isaacs
Book

Tactical and strategic missile guidance

Paul Zarchan
TL;DR: In this paper, a three-loop Autopilot is used to provide tactical and strategic guidance for a single-antenna MIMO-BMG system using MATLAB units.
Journal ArticleDOI

Optimal adaptive estimation of sampled stochastic processes

TL;DR: In this article, an adaptive approach to the problem of estimating a sampled, stochastic process described by an initially unknown parameter vector is presented, which is composed of a set of elemental estimators and a corresponding set of weighting coefficients, one pair for each possible value of the parameter vector.
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