[PDF] A Real Time Multi Sensor 3d Surface Shape Measurement System Using Fringe Analysis - eBooks Review

A Real Time Multi Sensor 3d Surface Shape Measurement System Using Fringe Analysis


A Real Time Multi Sensor 3d Surface Shape Measurement System Using Fringe Analysis
DOWNLOAD

Download A Real Time Multi Sensor 3d Surface Shape Measurement System Using Fringe Analysis PDF/ePub or read online books in Mobi eBooks. Click Download or Read Online button to get A Real Time Multi Sensor 3d Surface Shape Measurement System Using Fringe Analysis book now. This website allows unlimited access to, at the time of writing, more than 1.5 million titles, including hundreds of thousands of titles in various foreign languages. If the content not found or just blank you must refresh this page



A Real Time Multi Sensor 3d Surface Shape Measurement System Using Fringe Analysis


A Real Time Multi Sensor 3d Surface Shape Measurement System Using Fringe Analysis
DOWNLOAD
Author : Mohammad Saleh Al Sa'd
language : en
Publisher:
Release Date : 2011

A Real Time Multi Sensor 3d Surface Shape Measurement System Using Fringe Analysis written by Mohammad Saleh Al Sa'd and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2011 with categories.




A Real Time Multi Sensor 3d Surface Shape Measurement System


A Real Time Multi Sensor 3d Surface Shape Measurement System
DOWNLOAD
Author : Mohammad Al Sa'd
language : en
Publisher: LAP Lambert Academic Publishing
Release Date : 2011-10

A Real Time Multi Sensor 3d Surface Shape Measurement System written by Mohammad Al Sa'd and has been published by LAP Lambert Academic Publishing this book supported file pdf, txt, epub, kindle and other format this book has been release on 2011-10 with categories.


This book presents a state-of-the-art multi-sensor, 3D surface shape measurement system that is based upon fringe projection/analysis and which operates at speeds approaching real-time. The system provides the flexibility to choose from amongst several different fringe profilometry methods and the ability to manipulate their settings interactively. The system has a wide variety of potential applications, including Metrology Guided Radiotherapy, 3D modelling and visualisation, verbatim replication, and reverse engineering. This book provides a comprehensive framework for producing such a novel optical profilometry system, including the associated hardware and software structures, camera synchronisation, crosstalk reduction, and complete system integration. Also, it presents and illustrates the specific techniques that were developed to fulfil the requirements of various optical profilometry applications.



Real Time 3d Surface Shape Measurement Using Fringe Projection And System Geometry Constraints


Real Time 3d Surface Shape Measurement Using Fringe Projection And System Geometry Constraints
DOWNLOAD
Author : Xinran Liu
language : en
Publisher:
Release Date : 2019

Real Time 3d Surface Shape Measurement Using Fringe Projection And System Geometry Constraints written by Xinran Liu and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019 with Three-dimensional imaging categories.


Optical three-dimensional (3D) surface-shape measurement has diverse applications in engineering, computer vision and medical science. Fringe projection profilometry (FPP), uses a camera-projector system to permit high-accuracy full-field 3D surface-shape measurement by projecting fringe patterns onto an object surface, capturing images of the deformed patterns, and computing the 3D surface geometry. A wrapped phase map can be computed from the camera images by phase analysis techniques. Phase-unwrapping can solve the phase ambiguity of the wrapped phase map and permit determination of camera-projector correspondences. The object surface geometry can then be reconstructed by stereovision techniques after system calibration. For real-time 3D measurement, geometry-constraint based methods may be a preferred technique over other phase-unwrapping methods, since geometry-constraint methods can handle surface discontinuities, which are problematic for spatial phase unwrapping, and they do not require additional patterns, which are needed in temporal phase unwrapping. However, the fringe patterns used in geometry-constraint based methods are usually designed with a low frequency in order to maximize the reliability of correspondence determination. Although using high-frequency fringe patterns have proven to be effective in increasing the measurement accuracy by suppressing the phase error, high-frequency fringe patterns may reduce the reliability and thus are not commonly used. To address the limitations of current geometry-constraint based methods, a new fringe projection method for surface-shape measurement was developed using modulation of background and amplitude intensities of the fringe patterns to permit identification of the fringe order, and thus unwrap the phase, for high-frequency fringe patterns. Another method was developed with background modulation only, using four high-frequency phase-shifted fringe patterns. The pattern frequency is determined using a new fringe-wavelength geometry-constraint model that allows only two point candidates in the measurement volume. The correct corresponding point is selected with high reliability using a binary pattern computed from the background intensity. Equations of geometry-constraint parameters permit parameter calculation prior to measurement, thus reducing computational cost during measurement. In a further development, a new real-time 3D measurement method was devised using new background-modulated modified Fourier transform profilometry (FTP) fringe patterns and geometry constraints. The new method reduced the number of fringe patterns required for 3D surface reconstruction to two. A short camera-projector baseline allows reliable corresponding-point selection, even with high-frequency fringe patterns, and a new calibration approach reduces error induced by the short baseline. Experiments demonstrated the ability of the methods to perform real-time 3D measurement for a surface with geometric discontinuity, and for spatially isolated objects. Although multi-image FPP techniques can achieve higher accuracy than single-image methods, they suffer from motion artifacts when measuring dynamic object surfaces that are either moving or deforming. To reduce the motion-induced measurement error for multi-image FPP techniques, a new method was developed to first estimate the motion-induced phase shift errors by computing the differences between phase maps over a multiple measurement sequence. Then, a phase map with reduced motion-induced error is computed using the estimated phase shift errors. This motion-induced error compensation is computed pixel-wise for non-homogeneous surface motion. Experiments demonstrated the ability of the method to reduce motion-induced error in real-time, for real-time shape measurement of surfaces with high depth variation, and moving and deforming surfaces.



A Networked And Computer Controlled Multi Sensor 3d Fringe Projection Measurement System


A Networked And Computer Controlled Multi Sensor 3d Fringe Projection Measurement System
DOWNLOAD
Author : Mohammed Ahmed Qudeisat
language : en
Publisher:
Release Date : 2012

A Networked And Computer Controlled Multi Sensor 3d Fringe Projection Measurement System written by Mohammed Ahmed Qudeisat and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012 with categories.




High Speed 3d Imaging With Digital Fringe Projection Techniques


High Speed 3d Imaging With Digital Fringe Projection Techniques
DOWNLOAD
Author : Song Zhang
language : en
Publisher: CRC Press
Release Date : 2018-09-03

High Speed 3d Imaging With Digital Fringe Projection Techniques written by Song Zhang and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-09-03 with Computers categories.


Digital fringe projection (DFP) techniques are used for non-contact shape measurement of 3D images. In the rapidly expanding field of 3D high-speed imaging, the demand for DFP continues to grow due to the technology’s fast speed, flexibility, low cost, and high accuracy. High-Speed 3D Imaging with Digital Fringe Projection Techniques discusses the generation of digital fringe with digital video projection devices, covering a variety of core technical aspects. The book begins by establishing the theoretical foundations of fringe pattern analysis, reviewing various 3D imaging techniques while highlighting the advantages of DFP. The author then: Describes the differences between digital light processing (DLP), liquid crystal display (LCD), and liquid crystal on silicon (LCoS) Explains how to unwrap phase maps temporally and spatially Shows how to generate fringe patterns with video projectors Demonstrates how to convert phase to coordinates through system calibrations Provides a detailed example of a built-from-scratch 3D imaging system Incorporating valuable insights gained during the author’s 15+ years of 3D imaging research, High-Speed 3D Imaging with Digital Fringe Projection Techniques illuminates the pathway to advancement in high-speed 3D optical imaging using DFP.



Development Of A High Speed Robust System For Full Field Of View 3d Shape Measurements


Development Of A High Speed Robust System For Full Field Of View 3d Shape Measurements
DOWNLOAD
Author : Michael Jay Zervas
language : en
Publisher:
Release Date : 2011

Development Of A High Speed Robust System For Full Field Of View 3d Shape Measurements written by Michael Jay Zervas and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2011 with categories.


Abstract: 3D shape measurements are critical in a range of fields, from manufacturing for quality measurements to art conservation for the everlasting archival of ancient sculptures. The most important factor is to gather quantitative 3D information from measurement devices. Currently, there are limitations of existing systems. Many of the techniques are contact methods, proving to be time consuming and invasive to materials. While non-contact methods provide opportunities, many of the current systems are limited in versatility. This project focuses on the development of a fringe projection based system for 3D shape measurements. The critical advantage of the fringe projection optical technique is the ability to provide full field-of-view (FOV) information on the order from several square millimeters to several square meters. In the past, limitations in speed and difficulties achieving sinusoidal projection patterns have restricted the development of this particular type of system and limited its potential applications. For this reason, direct coding techniques have been incorporated to the developed system that modulate the intensity of each pixel to form a sinusoidal pattern using a 624 nm wavelength MEMS based spatial light modulator. Recovered phase data containing shape information is obtained using varying algorithms that range from a single image FFT analysis to a sixteen image, phase stepping algorithm. Reconstruction of 3D information is achievable through several image unwrapping techniques. The first is a spatial unwrapping technique for high speed applications. Additionally, the system uses an optimized Temporal Phase Unwrapping (TPU) algorithm that utilizes varying fringe frequencies ranging from 4 to 512 pixels per fringe to recover shape information in the time domain. This algorithm was chosen based on its robustness and accuracy for high resolution applications [Burke et al., 2002]. Also, unwrapping errors are minimized by approximately 90% as the number of images used is increased from the minimum to maximum fringe density. Contrary to other systems, the 3D shape measurement system developed in the CHSLT laboratories has unprecedented versatility to accommodate a variety of applications with the z-depth resolution of up to 25.4 [mu]m (0.001 inches) and speeds close to 200 frames per second. Hardware systems are integrated into user-friendly software that has been customized for fringe projection. The system has been tested in two extreme environments. The first is for quantification of cracks and potholes in the surface of roads under dynamic conditions. The second application was digitization of an art sculpture under static conditions. The system shows promising results and the potential for high quality images via algorithm optimization. Most importantly, there is potential to present real time 3D information at video speeds.



A Real Time 3d Surface Measurement System Using Projected Line Patterns


A Real Time 3d Surface Measurement System Using Projected Line Patterns
DOWNLOAD
Author : Anqi Shen
language : en
Publisher:
Release Date : 2010

A Real Time 3d Surface Measurement System Using Projected Line Patterns written by Anqi Shen and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010 with categories.




Sensors And Techniques For 3d Object Modeling In Underwater Environments


Sensors And Techniques For 3d Object Modeling In Underwater Environments
DOWNLOAD
Author : Fabio Menna
language : en
Publisher: MDPI
Release Date : 2018-09-28

Sensors And Techniques For 3d Object Modeling In Underwater Environments written by Fabio Menna and has been published by MDPI this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-09-28 with Detectors categories.


This book is a printed edition of the Special Issue "Sensors and Techniques for 3D Object Modeling in Underwater Environments" that was published in Sensors



The Use Of Computers In Radiation Therapy


The Use Of Computers In Radiation Therapy
DOWNLOAD
Author : Wolfgang Schlegel
language : en
Publisher: Springer Science & Business Media
Release Date : 2012-12-06

The Use Of Computers In Radiation Therapy written by Wolfgang Schlegel and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012-12-06 with Medical categories.


Computers have had and will continue to have a tremendous impact on professional activity in almost all areas. This applies to radiological medicine and in particular to radiation therapy. This book compiles the most recent developments and results of the application of computers and computer science as presented at the XIIIth International Conference on the Use of Computers in Radiation Therapy in Heidelberg, Germany. The text of both oral presentations and posters is included. The book is intended for computer sientists, medical physicists, engineers and physicians in the field of radiation therapy and provides a comprehensive survey of the entire field.



Intelligent Energy Field Manufacturing


Intelligent Energy Field Manufacturing
DOWNLOAD
Author : Wenwu Zhang
language : en
Publisher: CRC Press
Release Date : 2018-10-03

Intelligent Energy Field Manufacturing written by Wenwu Zhang and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-10-03 with Technology & Engineering categories.


Edited by prominent researchers and with contributions from experts in their individual areas, Intelligent Energy Field Manufacturing: Interdisciplinary Process Innovations explores a new philosophy of engineering. An in-depth introduction to Intelligent Energy Field Manufacturing (EFM), this book explores a fresh engineering methodology that not only integrates but goes beyond methodologies such as Design for Six Sigma, Lean Manufacturing, Concurrent Engineering, TRIZ, green and sustainable manufacturing, and more. This book gives a systematic introduction to classic non-mechanical manufacturing processes as well as offering big pictures of some technical frontiers in modern engineering. The book suggests that any manufacturing process is actually a process of injecting human intelligence into the interaction between material and the various energy fields in order to transfer the material into desired configurations. It discusses technological innovation, dynamic M-PIE flows, the generalities of energy fields, logic functional materials and intelligence, the open scheme of intelligent EFM implementation, and the principles of intelligent EFM. The book takes a highly interdisciplinary approach that includes research frontiers such as micro/nano fabrication, high strain rate processes, laser shock forming, materials science and engineering, bioengineering, etc., in addition to a detailed treatment of the so called "non-traditional" manufacturing processes, which covers waterjet machining, laser material processing, ultrasonic material processing, EDM/ECM, etc. Filled with illustrative pictures, figures, and tables that make technical materials more absorbable, the book cuts across multiple engineering disciplines. The majority of books in this area report the facts of proven knowledge, while the behind-the-scenes thinking is usually neglected. This book examines the big picture of manufacturing in depth before diving into the deta