內容簡介
現有同類圖書主要對制導控制系統及控制部件的工作原理進行介紹,而對系統的設計方法描述不多。隨著慣導及組合導航在彈上的普遍套用,過去很多無法實現的制導控制方案變為可行。 由於當今對飛彈制導精度的需求不斷提高,所以對制導控制系統的快速性有了全新的要求,其結果是設計中不再允許接受過去對控制模型所做的很多簡化, 從而導致當前的設計模型及可採用的制導控制策略與早期的飛彈設計理念有了很大變化。在上述背景下,作者力圖使本書的內容與當今制導控制的理念及應採用的模型密切結合,希望所介紹的多種實用、有價值的設計方法能夠對讀者有所幫助。希望書中介紹的內容既能涵蓋國內、國外的實用技術,也能兼顧東方、西方的設計理念。
作者簡介
林德福,教授,北京理工大學宇航學院航空宇航科學與技術專業博士研究生導師,中國宇航學會光電技術專業委員會常務委員,長期從事飛行器總體設計、飛行器制導與控制等方向的教學與科研。
圖書目錄
1 The Overview of Missile Guidance and Control
2 Missile Mathematical Models
§2.1 Symbols and Definitions
§2.2 Euler Equations of the Rigid Body Motion
§2.3 Configuration of the Control Surfaces
§2.4 Missile Aerodynamic Derivatives and Dynamic Coefficients
§2.5 Aerodynamic Transfer Functions of the Missile
3 Simplified Models of Missile Control Components
4 Guidance Radar
§4.1 Introduction
§4.2 Motion Characteristic of Line of sight
§4.3 Control Loop of the Guidance Radar
§4.4 Effect of the Receiver Thermal Noise on the Guidance Performance
§4.5 Effect of Target Glint on the Guidance Performance
§4.6 Effect of Other Disturbances on the Guidance Performance
5 Seekers
§5.1 Definitions
§5.2 Different Kinds of Seekers
§5.3 Antidisturbance Moment of the Seeker
§5.4 Body Motion Coupling and the Parasitic Loop
§5.5 A Real Seeker Model
§5.6 Other Parasitic Loop Models
§5.7 Platform Based Seeker Design
6 Missile Autopilot Design
§6.1 Acceleration Autopilot
§6.2 Pitch/Yaw Attitude Autopilot
§6.3 Flight Path Angle Autopilot
§6.4 Roll Attitude Autopilot
§6.5 BTT Missile Autopilot
§6.6 Thrust Vector Control and Thruster Control
§6.7 Spinning Missile Control
7 Line of Sight Guidance Methods
§7.1 LOS Guidance System
§7.2 Required Acceleration for the Missile with LOS Guidance
§7.3 Analysis of the LOS Guidance Loop
§7.4 Lead Angle Guidance Method
8 Proportional Navigation and Extended Proportional Navigation Guidance Laws
§8.1 Proportional Navigation Guidance Law
§8.2 Optimal Proportional Navigation Guidance Laws (OPN)
§8.3 Other Proportional Navigation Laws
§8.4 Target Acceleration Estimation
§8.5 Optimum Trajectory Control System Design
9 Optimal Guidance for Trajectory Shaping
§9.1 Optimality of Error Dynamics in Missile Guidance
§9.2 Optimal Predictor corrector Guidance
§9.3 Gravity turn assisted Optimal Guidance Law
§9.4 Three dimensional Optimal Impact Time Guidance for Antiship Missiles
References