2007Transactions of Beijing Institute of TechnologyRequires access

Transform and Coupling Analysis of Double-Channel Control Rolling Missile Autopilot Loop

Jianqiao Yu

Open publisher page 6 citations

Abstract

Based on the characteristics of rolling missile with double-channel control,the autopilot loop is transferred from body coordinate system to quasi-body coordinate system after a rolling transfer.Compared with a non-rotating missile standard autopilot,the body and fin servo models of the autopilot are both changed.Couplings of motion,control and the accelerometer placed at a distance ahead of the c.g.exist in the rolling missile autopilot loop.The results show that the autopilot design needs decoupling.

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What this paper is about

Based on the characteristics of rolling missile with double-channel control,the autopilot loop is transferred from body coordinate system to quasi-body coordinate system after a rolling transfer.Compared with a non-rotating missile standard autopilot,the body and fin servo models of the autopilot are both changed.Couplings of motion,control and the accelerometer placed at a distance ahead of the c.g.exist in the rolling missile autopilot loop.The results show that the autopilot design needs decoupling.

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Available abstract

Based on the characteristics of rolling missile with double-channel control,the autopilot loop is transferred from body coordinate system to quasi-body coordinate system after a rolling transfer.Compared with a non-rotating missile standard autopilot,the body and fin servo models of the autopilot are both changed.Couplings of motion,control and the accelerometer placed at a distance ahead of the c.g.exist in the rolling missile autopilot loop.The results show that the autopilot design needs decoupling.

Key concepts: Autopilot, Missile, Control theory (sociology), Decoupling (probability), Engineering, Servo, Missile guidance, Control system

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