2002•Unpublished venueRequires access

Analysis and design of shipboard defense missile system via statistical error approach

Li‐Wei Fong, Jiadi Dai, C.-Y. Liu

Open publisher page 1 citations

Abstract

The designer of the shipboard defense missile system is interested in defining the missile system error, the missile seeker actuating time, and the seeker detection probability to make the defense system more powerful for ship survival. This paper develops one missile system error statistical mathematics model for the shipboard defense missile system fire control phase array radar tracking accuracy, and the missile seeker actuating time for active homing to establish the missile and target line of sight to improve the seeker detection probability. Furthermore, one utilizes the previous calculated interception range, seeker tracking range and seeker beam width to develop the missile system error statistical mathematics model for system applications.

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What this paper is about

The designer of the shipboard defense missile system is interested in defining the missile system error, the missile seeker actuating time, and the seeker detection probability to make the defense system more powerful for ship survival. This paper develops one missile system error statistical mathematics model for the shipboard defense missile system fire control phase array radar tracking accuracy, and the missile seeker actuating time for active homing to establish the missile and target line of sight to improve the seeker detection probability. Furthermore, one utilizes the previous calculated interception range, seeker tracking range and seeker beam width to develop the missile system error statistical mathematics model for system applications.

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Available abstract

The designer of the shipboard defense missile system is interested in defining the missile system error, the missile seeker actuating time, and the seeker detection probability to make the defense system more powerful for ship survival. This paper develops one missile system error statistical mathematics model for the shipboard defense missile system fire control phase array radar tracking accuracy, and the missile seeker actuating time for active homing to establish the missile and target line of sight to improve the seeker detection probability. Furthermore, one utilizes the previous calculated interception range, seeker tracking range and seeker beam width to develop the missile system error statistical mathematics model for system applications.

Key concepts: Missile, Missile guidance, Missile defense, Engineering, Range (aeronautics), Weapon system, Terminal guidance, Radar

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