This comprehensive guide presents the latest advancements in Digital Fringe Projection (DFP) technology for non-contact 3D shape measurement. Building upon the foundational knowledge established in the first edition, this expanded volume incorporates significant technological developments from nearly three decades of the author's research.
High-Speed 3D Imaging with Digital Fringe Projection Techniques, Second Edition serves as both a theoretical reference and practical implementation guide, featuring detailed illustrations, mathematical frameworks, and step-by-step procedures for building complete 3D imaging systems from scratch. Readers will gain mastery of cutting-edge DFP techniques through newly introduced topics including advanced phase unwrapping methods, binary pattern optimization, pixel-wise calibration for superior accuracy, and innovative approaches to autofocusing using electrically tunable lenses (ETLs). The second edition also covers practical solutions for auto-exposure control and high dynamic range (HDR) imaging, enabling measurement across challenging surface conditions. Each chapter provides theoretical foundations alongside practical implementation guidance, allowing readers to apply these techniques immediately in their own research or industrial applications.
This book is ideal for researchers, engineers, and graduate students working in optical metrology, computer vision, mechanical engineering, and industrial quality control. Professionals seeking to implement high-speed, high-accuracy 3D measurement systems will find particular value in the practical calibration methods and system optimization techniques.
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Song Zhang earned his BS from the University of Science and Technology of China and his MS and PhD in Mechanical Engineering from Stony Brook University. He then spent three years in the Mathematics Department at Harvard University. He is currently a Professor of Mechanical Engineering at Purdue University. A highly cited and decorated fellow of ASME, Optica, and SPIE, Professor Zhang is often credited with developing the first-ever high-resolution, real-time 3D optical imaging system.
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Hardcover. Condition: new. Hardcover. This comprehensive guide presents the latest advancements in Digital Fringe Projection (DFP) technology for non-contact 3D shape measurement. Building upon the foundational knowledge established in the first edition, this expanded volume incorporates significant technological developments from nearly three decades of the author's research.High-Speed 3D Imaging with Digital Fringe Projection Techniques, Second Edition serves as both a theoretical reference and practical implementation guide, featuring detailed illustrations, mathematical frameworks, and step-by-step procedures for building complete 3D imaging systems from scratch. Readers will gain mastery of cutting-edge DFP techniques through newly introduced topics including advanced phase unwrapping methods, binary pattern optimization, pixel-wise calibration for superior accuracy, and innovative approaches to autofocusing using electrically tunable lenses (ETLs). The second edition also covers practical solutions for auto-exposure control and high dynamic range (HDR) imaging, enabling measurement across challenging surface conditions. Each chapter provides theoretical foundations alongside practical implementation guidance, allowing readers to apply these techniques immediately in their own research or industrial applications.This book is ideal for researchers, engineers, and graduate students working in optical metrology, computer vision, mechanical engineering, and industrial quality control. Professionals seeking to implement high-speed, high-accuracy 3D measurement systems will find particular value in the practical calibration methods and system optimization techniques. This comprehensive guide presents the latest advancements in Digital Fringe Projection (DFP) technology for non-contact 3D shape measurement. Building upon the foundational knowledge established in the first edition, this expanded volume incorporates significant technological developments from nearly three decades of the author's research. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Seller Inventory # 9781041191391
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Hardcover. Condition: new. Hardcover. This comprehensive guide presents the latest advancements in Digital Fringe Projection (DFP) technology for non-contact 3D shape measurement. Building upon the foundational knowledge established in the first edition, this expanded volume incorporates significant technological developments from nearly three decades of the author's research.High-Speed 3D Imaging with Digital Fringe Projection Techniques, Second Edition serves as both a theoretical reference and practical implementation guide, featuring detailed illustrations, mathematical frameworks, and step-by-step procedures for building complete 3D imaging systems from scratch. Readers will gain mastery of cutting-edge DFP techniques through newly introduced topics including advanced phase unwrapping methods, binary pattern optimization, pixel-wise calibration for superior accuracy, and innovative approaches to autofocusing using electrically tunable lenses (ETLs). The second edition also covers practical solutions for auto-exposure control and high dynamic range (HDR) imaging, enabling measurement across challenging surface conditions. Each chapter provides theoretical foundations alongside practical implementation guidance, allowing readers to apply these techniques immediately in their own research or industrial applications.This book is ideal for researchers, engineers, and graduate students working in optical metrology, computer vision, mechanical engineering, and industrial quality control. Professionals seeking to implement high-speed, high-accuracy 3D measurement systems will find particular value in the practical calibration methods and system optimization techniques. This comprehensive guide presents the latest advancements in Digital Fringe Projection (DFP) technology for non-contact 3D shape measurement. Building upon the foundational knowledge established in the first edition, this expanded volume incorporates significant technological developments from nearly three decades of the author's research. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. Seller Inventory # 9781041191391
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Condition: New. Song Zhang earned his BS from the University of Science and Technology of China and his MS and PhD in Mechanical Engineering from Stony Brook University. He then spent three years in the Mathematics Department at Harvard University. He i. Seller Inventory # 2850389179
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