商品描述
The authors have designed this timely new book in response to the need for up-to-date and complete coverage of multi-disciplinary basic principles of optical beam control for imaging satellites and laser systems. As the uses of imaging satellites and laser systems increase, optical beam control for these systems will occupy engineers and scientists for years to come. The book introduces space telescopes, ground telescopes, laser communications, and high energy laser systems, covering light sources, lenses, wave optics, diffraction, and polarization, as well as fine pointing control, classical control, modern control, Kalman filters, sensors, actuators, flexible control, slew maneuvers, and acquisition, tracking, and pointing.
The authors have over 30 years' experience in research, development, and testing of complex state-of-art systems, such as 3-meter diameter segmented mirror space telescopes and high energy laser beam control systems.
As a text and reference dealing with basics of optical beam control, this book includes information on:
- Sources of aberrations, vibration and jitter, optical aberrations, air turbulence, and measure of optical aberrations
 - Vibration isolation and jitter control, active jitter control, strap down, and inertial stable platform
 - Adaptive optics, wavefront sensors, wavefront reconstruction, adaptive optics configurations, and control systems
 - Imaging satellites, telescope design, optical train components, image aberration, and performance analysis
 - Laser beam control hardware, laser aberration, and laser performance analysis
 
Optical Beam Control is an essential reference for engineers working in imaging satellites and laser systems along with electrical engineers focused on optics, satellites, lasers, and control systems. The text is also valuable for students taking courses on laser technology, satellite control, spacecraft design, and optics and photonics.
商品描述(中文翻譯)
作者設計了這本及時的新書,以回應對於成像衛星和激光系統的多學科光束控制基本原則的最新和完整覆蓋的需求。隨著成像衛星和激光系統的使用增加,這些系統的光束控制將在未來幾年內佔據工程師和科學家的注意力。本書介紹了太空望遠鏡、地面望遠鏡、激光通信和高能激光系統,涵蓋了光源、透鏡、波光學、衍射和偏振,以及精確指向控制、經典控制、現代控制、卡爾曼濾波器、傳感器、致動器、靈活控制、轉動機動和獲取、跟蹤及指向。
作者在複雜的尖端系統的研究、開發和測試方面擁有超過30年的經驗,例如直徑3米的分段鏡太空望遠鏡和高能激光束控制系統。
作為一本處理光束控制基礎的教科書和參考書,本書包括以下資訊:
- 畸變、振動和抖動的來源,光學畸變、空氣湍流及光學畸變的測量
- 振動隔離和抖動控制、主動抖動控制、固定式和慣性穩定平台
- 自適應光學、波前傳感器、波前重建、自適應光學配置和控制系統
- 成像衛星、望遠鏡設計、光學傳遞元件、影像畸變和性能分析
- 激光束控制硬體、激光畸變和激光性能分析
《光束控制》是為從事成像衛星和激光系統的工程師以及專注於光學、衛星、激光和控制系統的電氣工程師提供的重要參考書。本書對於修習激光技術、衛星控制、航天器設計以及光學和光子學課程的學生也具有很高的價值。
作者簡介
Dr. Brij N. Agrawal is a Distinguished Professor in the Department of Mechanical and Aerospace Engineering and Director of the Spacecraft Research and Design Center at Naval Postgraduate School (NPS).
Dr. Jae Jun Kim joined the NPS in 2005. He is currently a Research Associate Professor in the Department of Mechanical and Aerospace Engineering.
Sachin Agrawal is a Engineer who has worked on spacecraft guidance, navigation, and control at Maxar Technologies and Lockheed Martin.
作者簡介(中文翻譯)
布里吉·N·阿格拉瓦爾博士是海軍研究生院(NPS)機械與航空工程系的傑出教授,以及太空船研究與設計中心的主任。
金在俊博士於2005年加入NPS,目前是機械與航空工程系的研究副教授。
薩欽·阿格拉瓦爾是一名工程師,曾在Maxar Technologies和洛克希德·馬丁(Lockheed Martin)從事太空船的導航、引導和控制工作。