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Tactical and strategic missile guidance

Paul Zarchan
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TLDR
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.
Abstract
Numerical Techniques Fundamentals of Tactical Missile Guidance Method of Adjoints and the Homing Loop Noise Analysis Convariance Analysis and the Homing Loop Proportional Navigation and Miss Distance Digital Fading Memory Noise Filters in the Homing Loop Advanced Guidance Laws Kalman Filters and the Homing Loop Other Forms of Tactical Guidance Tactical Zones Strategic Considerations Boosters Lambert Guidance Strategic Intercepts Miscellaneous Topics Ballistic Target Properties Extended Kalman Filtering and Ballistic Coefficient Estimation Ballistic Target Challenges Multiple Targets Weaving Targets Representing Missile Airframe with Transfer Functions Introduction to Flight Control Design Three-Loop Autopilot. Appendices: Tactical and Strategic Missile Guidance Software Converting Programmes to C Converting Programmes to MATLAB Units.

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Citations
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Book ChapterDOI

Single-Loop Integrated Guidance and Control Using High-Order Sliding-Mode Control

TL;DR: In this article, a single-loop integrated guidance and control (G&C) intercept strategy is introduced that establishes a direct link between the sensor feedback and the fin actuators.
Journal ArticleDOI

Design of a supervisory controller for CLOS guidance with lead angle

TL;DR: In this paper, a supervisory command-to-line-of-sight guidance law with lead angle was proposed to keep the missile flight within the tracking beam, where a nonlinear supervisory controller was designed and coupled with the main sliding mode controller in the form of an additional control signal.

Scheme for Anti-Vessel Missiles Based on Three Channels Independence Design Idea

TL;DR: In this paper, a scheme of integr at ed guidance/autopil-to-design for STT missile against maneuvering targets on the sea is proposed, and three channels independence design idea is adopted.
Proceedings ArticleDOI

Target interception by UAVs in a sensor network

TL;DR: This paper addresses the problem of intercepting mobile targets by UAVs based on measurements, not from on–board sensors, but from a network of low–quality sensors previously deployed in the area, using a sensor network model developed to represent the detection and data transmission by the network.