1 edition of Direct-detection LADAR systems found in the catalog.
Direct-detection LADAR systems
Richard D. Richmond
Includes bibliographical references and index.
|Statement||Richard D. Richmond & Stephen C. Cain|
|Series||Tutorial texts in optical engineering -- v. TT85|
|Contributions||Cain, Stephen C., 1969-|
|LC Classifications||TK6592.O6 R53 2009|
|The Physical Object|
|LC Control Number||2009051442|
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Direct-Detection LADAR Direct-detection LADAR systems book (SPIE Tutorial Text Vol. TT85) (Tutorial Texts in Optical Engineering Series)Cited by: Spie Press Book Direct-Detection LADAR Systems. Author(s): Richard D. Richmond; Stephen C. Cain. Format Member Price Non-Member Price; Softcover: $ $ PDF: $ $ Add to cart.
Book Description. This text is designed to introduce engineers-in-training to the basic concepts and operation of 3D imaging LADAR systems. Download Citation | Direct-detection LADAR systems | This text is designed to introduce engineers-in-training to the basic concepts and operation of 3D imaging LADAR systems.
The book covers laser. This text is designed to introduce engineers-in-training to the Direct-detection LADAR systems book concepts and operation of 3D imaging LADAR systems. The book covers laser range equations; sources of noise in LADAR signals; LADAR waveforms; the effects of wavefront propagation on LADAR beams through optical systems and atmospheric turbulence; algorithms for detecting, ranging, and tracking.
Get this from a library. Direct-detection LADAR systems. [Richard D Richmond; Stephen C Cain] -- This text is designed to introduce engineers-in-training to the basic concepts and operation of 3D imaging LADAR systems.
The book covers laser range equations; sources of. Direct-Detection LADAR Systems Written for engineers, this book introduces the basic concepts and operation of 3D imaging LADAR systems. Topics include laser range equations, sources of noise in LADAR signals, LADAR waveforms, and algorithms for.
The National Institute of Standards and Technology (NIST) adopted the term LADAR (LAser Detection And Ranging) for these laser-based RADAR-type systems. That term will be used in this text.
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Direct-Detection LADAR Systems (SPIE Tutorial Text Vol. TT85) (Tutorial Texts in Optical Engineering Series) Richard D. Richmond, Stephen C. Cain This text is designed to introduce engineers-in-training to the basic concepts and operation of 3D imaging LADAR systems.
Direct Detection LADAR Systems is designed to introduce engineers-in-training to the basic concepts and operation of 3D- imaging LADAR systems. The book covers laser range equations; sources of noise in LADAR signals; LADAR waveforms; the effects of wavefront propagation on LADAR beams through optical systems and atmospheric turbulence; algorithms for detecting.
In general, the lidar techniques differ based on laser characteristics and transceiver architecture such as pulsed or continuous wave (CW) lidars, and. Visit to get more information about this book, to buy it in print, or to download it as a free PDF.
system types well summarized in a book chapter dedicated to wind lidar systems.1 A simplified diagram of a generic detector truncation efficiency (direct detection), and the heterodyne efficiency (coherent detection) respectively. For the other efficiencies of the lidar system are similar in both coherent and direct detection systems.
Chapter 1 Introduction to LADAR Systems Background RADAR (RAdio Detection And Ranging) is the process of transmitting, receiving, detecting, and processing an electromagnetic wave that reflects from a target. RADAR was first developed by the German Army in As theoretical and technical developments continued, RADAR techniques andFile Size: KB.
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Ladar systems are an emerging technology with applications in many fields. Consequently, simulations for these systems have become a valuable tool in the improvement of existing systems and the development of new ones.
This paper discusses the theory and issues involved in reliably modeling the return waveform of a ladar beam footprint in the Utah State University Cited by: Chapter 1 Introduction to LADAR Systems 1 Background 1 LADAR and RADAR Fundamentals 1 Heterodyne versus direct detection 7 LADAR Range Equation 8 Laser transmitter models 8 Atmospheric transmission 10 Target reflectivity and angular dispersion 11 Dispersion upon reflection Lidar (/ ˈ l aɪ d ɑːr /, also LIDAR, LiDAR, and LADAR) is a method for measuring distances by illuminating the target with laser light and measuring the reflection with a sensor.
Differences in laser return times and wavelengths can then be used to make digital 3-D representations of the target. It has terrestrial, airborne, and mobile applications. Direct-detection LADAR Systems by Richard D.
Richmond and Stephen C. Cain Call Number: TKO6 R53 Electrical Engineering: a Pocket Reference by Heinz Schmidt-Walter and Ralf KoriesAuthor: Manuel Jusino. performed for two types of direct-detection Doppler lidar systems: the double-edge and the multi-channel techniques.
Both systems were optimized to measure winds from Rayleigh backscatter at n m. Simulations show that the measurement uncertainty during daytime is degraded by only about % compared to nighttime performance.
tion ladar sensors and technology since the s . Recent developments of compact solid-state microchip lasers and high-efficiency Geiger-mode avalanche pho-todiode (APD) detector arrays have enabled the devel-opment of compact and rugged ladar sensor systems [3–5].
In this article, we report on the DARPA-funded.Direct-detection LADAR systems [electronic resource]  Richmond, Richard D. Bellingham, Wash. ( 20th St. Bellingham WA USA): SPIE, This ability has been accompanied by a similar enhancement in our ability to characterize structures and systems at the nanoscale.
This book provides a broad overview of those.Random books from Mathworks's library. Direct-Detection LADAR Systems (SPIE Tutorial Text Vol.
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