Prusty / Behera / Lau | Advances in Sustainable Infrastructure, Defence Systems and Climate Resilience – Proceedings of DINS-2026 | Buch | 978-981-9260-42-3 | www.sack.de

Buch, Englisch, Format (B × H): 155 mm x 235 mm

Reihe: Lecture Notes in Civil Engineering

Prusty / Behera / Lau

Advances in Sustainable Infrastructure, Defence Systems and Climate Resilience – Proceedings of DINS-2026


Erscheinungsjahr 2027
ISBN: 978-981-9260-42-3
Verlag: Springer

Buch, Englisch, Format (B × H): 155 mm x 235 mm

Reihe: Lecture Notes in Civil Engineering

ISBN: 978-981-9260-42-3
Verlag: Springer


The increasing complexity of global challenges such as climate change, infrastructure resilience, and national security has created a critical need for integrated, data-driven solutions. The International Conference on Data-Driven Insights for National Security (DINS-2026) serves as a multidisciplinary platform that bridges artificial intelligence, sustainable infrastructure, defense systems, and climate resilience. This proceedings volume presents selected, peer-reviewed contributions that explore the application of artificial intelligence, machine learning, and data analytics to design resilient infrastructure systems, strengthen defense technologies, and address climate-related risks. The book highlights how intelligent systems can support energy-efficient infrastructure, predictive maintenance of critical systems, climate-informed decision-making, and secure digital ecosystems. The volume is structured around key themes, including sustainable and intelligent infrastructure systems, AI-driven defense and security frameworks, climate resilience through data analytics, and governance and policy aspects of emerging technologies. The contributions provide both theoretical insights and real-world applications, demonstrating how interdisciplinary approaches can enhance national preparedness and long-term sustainability. This book will be of interest to researchers, engineers, policymakers, and industry professionals working in sustainable infrastructure, defense systems, climate science, artificial intelligence, and data-driven governance. The proceedings specifically emphasize the convergence of sustainability, infrastructure resilience, and defense systems through data-driven methodologies, aligning with global priorities such as climate adaptation, smart infrastructure, and secure technological ecosystems. The volume aligns with global priorities such as sustainable development goals (SDGs), climate adaptation strategies, and resilient infrastructure planning.

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Weitere Infos & Material


Evaluation of Sustainable Standards in Military Infrastructure in India.- Ambient Temperature Outlier Correction Framework for Climate-Resilient Defence Infrastructure.- Examining Defence Adaptation Strategies for Climate Action to Achieve SDG 13.- Integration and Impact of Green Technologies in Strategic Defence Systems.- Design and Implementation of Green IoT-Based Deduplication for Defence Infrastructure Energy Management.- Detection and Classification of Faults for Secure and Sustainable Power Transmission.- Infrastructure Using Machine Learning Technique.- Harnessing Quantum Ecosystems for National Resilience and Sustainable Transformation.- Multidimensional Reasoning in Transformer Based Language Models for Sustainable Infrastructure and National Security Applications.- Strengthening Reproductive Health Infrastructure for Sustainable Development in India.- Adaptive Chirp-Rate Doppler Enhancement for Unmanned Aerial Vehicle Recognition in Defence Applications.- Deep Learning-Based Underwater Acoustic Platform Identification for Maritime Surveillance and Defence Applications.- Intelligent Threat Detection and Decision Support Framework for Defence Infrastructure Security.- Online Signature Verification for Secure Defence Infrastructure Access.- Recognition-Based Graphical Password Authentication from a Usability and Security Perspective.- Invisible Watermarking for Secure Machine Learning Model Sharing in Critical Digital Ecosystems.- 
Defense-Oriented Crowdfunding Solution on Solana for Critical Cyber Resilience
Analyzing Cyber Incident Detection and the Future of Proactive AI-Enabled Digital Defence Systems.- Recent Software Security Techniques and Efficient Protection Mechanisms in Defense for National Security.- AI-Driven Cybersecurity Career Guidance and Job Recommendation Framework for Digital Defence Workforce.- Application of Deep Learning in Software Defect Prediction for Healthcare Systems with Implications for National Security.- An Intelligent Approach in Credit Card Fraud Detection for Financial Security under Class Imbalance.- AI Governance, Platform Accountability and National Security in Addressing Cyber Harassment against Women in India.- Charting the Legal Liability of AI and Deepfakes in National Security in the Digital World.- Artificial Intelligence and Ethics in India's Culturally Plural Society with Implications for Governance and National Security.- AI Health Chatbots and the Legal Boundary Between Information and Medical Advice for National Security.- Artificial Intelligence as a Strategic Instrument in China's Defence, Economy and Diplomacy.- A Benchmark Framework for Harm Indicator Detection in Code-Mixed Romanized Nepali for National Security Analytics.- An Assessment of the National Security Issues in Democratic States.- Early Paediatric Disease Detection and Health Resilience Assessment for Military Families.- MIRAGE: Modality-Incongruent Representation and Aggregation for Graph-Enhanced Federated Learning in Chest Radiology.


Dr. B Rajanarayan Prusty (Senior Member, IEEE) is a distinguished Professor and Dean of Research and Innovation at Noida International University, Greater Noida. He has nearly two decades of experience in teaching and research, having held esteemed leadership positions. Dr. Prusty obtained his PhD from the National Institute of Technology Karnataka, Surathkal.

Dr. Prusty has been honored with the Star Alumni Award 2026 by NIST University, India. He has been recognized as one of the World’s Top 2% Scientists for 2025 by Stanford University, based on Elsevier’s citation indicators, underscoring his impactful research contributions. Dr. Prusty has also received several prestigious awards, including the POSOCO Power System Awards 2019 by POSOCO in association with IIT Delhi, the University Foundation Day Research Award 2019 from BPUT, Odisha, the Young Professional Research Award from NIT Meghalaya, India, and the Best Associate Editor Award for 2022 and 2023 by the Journal of Electrical Engineering and Technology, Springer.

Dr. Prusty’s research focuses on sustainability and climate-responsive energy systems, with expertise in data preprocessing, time series forecasting, and high-dimensional dependence modeling, applying ML and probabilistic methods to enhance power system security.

Dr. Laxman Kumar Behera is Associate Professor at Special Centre for National Security Studies (SCNSS), Jawaharlal Nehru University (JNU), New Delhi, India. Before joining JNU in 2020, Dr. Behera worked in MP-IDSA, a New Delhi-based think tank under the Indian Ministry of Defence. Dr. Behera has two decades of experience in defence and security domains.

Dr. Behera has published numerous peer-reviewed research papers, including in journals such as , , , , , and . Besides, he has numerous monographs, occasional papers, policy/issue briefs, strategic comments and op-ed articles to his credit. Dr. Behera is the author of two single-authored books. The first book, , published in 2015, is an autoreactive account on India’s defence manufacturing policy, players and challenges, and remains a key textbook for general readers and policy makers alike. His latest book on was published by Routledge, London in 2021.

Dr. Behera is currently a member of the Defence Acquisition Review Committee which has been set up by the Indian defence ministry to review India’s capital procurement procedures

Dr. Lau Kok Keong is currently holding the position of Associate Professor at Chemical Engineering Department and Head for Centre of Carbon Capture, Utilisation and Storage (CCUS), Universiti Teknologi PETRONAS, UTP. He has joined UTP since 2007. He is a Chartered Marine Engineer (UK) and Professional Engineer in Malaysia.

His expertise covers the research area of carbon capture, membrane separation, absorption modelling, simulation and process scale-up. Dr. Lau has published more than 130 WoS journals.



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