Technology Development of Full Guidance Technique in Missile Weapon
Xuesong Wang
Abstract
Xuesong Wang
Abstract
Full guidance technique(FGT) in missile weapon,based on the acquisition and application of high precision inertial navigation information,is introduced for the exigent demands of precision striking warfare in anti-ship,land-attacking and anti-radiation.The novel concepts,methods and applications are elaborated to construct a hardware-in-the-loop simulation and visualization system in adding of inertial ap-paratus.A representative scenario simulation,whole trace flying of an anti-ship cruise missile,is carried out to fully demonstrate the feasibility and validity of FGT.The exploitation and advancement of current missile guidance,sensor fusion and signal processing techniques,as the core of FGT,would provide a vi-able approach to enhance the performance of missile weapons under complicated environment,as well as offer some useful suggestions for future precision striking development.
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Full guidance technique(FGT) in missile weapon,based on the acquisition and application of high precision inertial navigation information,is introduced for the exigent demands of precision striking warfare in anti-ship,land-attacking and anti-radiation.The novel concepts,methods and applications are elaborated to construct a hardware-in-the-loop simulation and visualization system in adding of inertial ap-paratus.A representative scenario simulation,whole trace flying of an anti-ship cruise missile,is carried out to fully demonstrate the feasibility and validity of FGT.The exploitation and advancement of current missile guidance,sensor fusion and signal processing techniques,as the core of FGT,would provide a vi-able approach to enhance the performance of missile weapons under complicated environment,as well as offer some useful suggestions for future precision striking development.
Key concepts: Missile, Cruise missile, Computer science, Missile guidance, Inertial navigation system, Systems engineering, Visualization, Weapon system