Color image watermarking with watermark authentication against false positive detection using SVD
Join Neha Singh for an engaging webinar on color image watermarking using Singular Value Decomposition (SVD), where you will explore advanced techniques for secure watermark embedding and authentication. Learn how to minimize false positive detection, enhance robustness, and ensure reliable digital image protection, with practical insights into real-world applications in cybersecurity, digital forensics, and secure multimedia communication systems.
Register Now - FreeAbout This Webinar
This insightful webinar explores advanced techniques in color image watermarking using Singular Value Decomposition (SVD). How can digital images be securely protected? What methods ensure accurate watermark authentication while reducing false positive detection? And how can these techniques strengthen modern multimedia security systems?
Key Publications & Research
Neha Singh’s webinar focuses on advanced color image watermarking techniques using SVD, emphasizing secure authentication, false positive detection reduction, and robust multimedia protection, providing a strong foundation for modern digital security and signal processing innovation.
"Tunnel field effect transistor device structures: A comprehensive review"
Materials Today: Proceedings 79, 292-296, 2023"Low power adder circuits using various leakage reduction techniques"
Intelligent Computing Techniques for Smart Energy Systems: Proceedings of …, 2019."Electrical behavior of plant based material"
Materials Today: Proceedings 79, 349-354, 2023"Intelligent computing techniques for smart energy systems"
Incomplete citation; further details required, 2023."Low-power memory design for IoT-enabled systems: Part 2"
Electrical and Electronic Devices, Circuits and Materials, 63-80, 2021.Why This Webinar Matters
Color image watermarking plays a vital role in protecting digital media ownership and integrity in an era of rapid content sharing. Ensuring robust watermark authentication—especially against false positive detection—is crucial for preventing unauthorized claims, enhancing trust in digital assets, and strengthening cybersecurity frameworks. Using SVD-based techniques offers improved resilience, accuracy, and reliability in watermark verification.Who Should Attend
Researchers and practitioners in image processing, cybersecurity professionals, data scientists, students in computer science and signal processing, and anyone interested in digital rights management, multimedia security, and advanced watermarking techniques.Learning Outcomes
Participants will gain a solid understanding of SVD-based color image watermarking methods, techniques for embedding and extracting watermarks, strategies to prevent false positive detection, and practical insights into building secure and reliable watermark authentication systems.Featured Speaker
Webinar Curriculum
A systematic study of Very Large Scale Integration (VLSI), grounded in electronics, semiconductor physics, and modern chip design methodologies.
• Definition and evolution of integrated circuits
• From SSI, MSI to VLSI and beyond (ULSI)
• Basic building blocks: transistors, logic gates, and circuits
• VLSI as a scalable and deterministic engineering discipline
• Power, performance, and area (PPA) trade-offs
• Scaling limitations and Moore’s Law slowdown
• Process variation and reliability issues
• EDA (Electronic Design Automation) tools overview
• Hardware description languages (Verilog, VHDL)
• Simulation and verification tools
• Advanced nodes (FinFET, GAAFET technologies)
• AI-driven chip design and automation
• 3D ICs and heterogeneous integration
• Sustainable and energy-efficient chip design
• Chips behind smartphones, wearables, and smart homes
• Role of VLSI in AI, autonomous vehicles, and space tech
• How tiny circuits drive massive innovations
• Roles: Design engineer, verification engineer, physical design engineer
• Skills required and learning roadmap
• Opportunities in top companies (Intel, NVIDIA, Qualcomm, etc.)
• VLSI as the backbone of modern digital systems and innovation
• Integration of theory, design, and fabrication into a unified discipline
• The critical role of efficient design in shaping future technologies
• Continuous evolution driven by emerging applications and challenges
• Encouragement to explore VLSI as a field of innovation, research, and career opportunity
Frequently Asked Questions
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Limited seats available for this in-depth webinar on Color Image Watermarking with Watermark Authentication against False Positive Detection using SVD with Neha Singh
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Supporting UN Sustainable Development Goals
This webinar explores secure color image watermarking using SVD, promoting data authenticity, reducing false detection, strengthening cybersecurity, supporting healthcare integrity, and advancing innovation aligned with key Sustainable Development Goals.
SDG 4: Quality Education
Provides learners and researchers with knowledge of image security, authentication methods, and false positive reduction techniques, enhancing technical education in cybersecurity and signal processing.
SDG 3: Good Health and Well-Being
Enhances the security and authenticity of medical images (such as MRI, CT scans, and X-rays) through robust watermarking techniques, ensuring accurate diagnosis and preventing data tampering. Reliable image authentication helps healthcare professionals make safer decisions, ultimately improving patient care and well-being.
SDG 9: Industry, Innovation and Infrastructure
Promotes advanced research in digital watermarking and SVD-based techniques, strengthening secure digital infrastructure and fostering innovation in multimedia technology.
How This Webinar Contributes to Global Goals
Advancing Secure Communication
Enhancing knowledge of color image watermarking techniques using SVD to protect digital media from unauthorized use and tampering.
Ensuring Authenticity & Trust
Introducing robust watermark authentication methods that reduce false positive detection, ensuring reliable ownership verification and data integrity.
Supporting Cybersecurity Innovation
Empowering researchers and engineers with advanced techniques to strengthen multimedia security in applications like copyright protection, medical imaging, and digital forensics.