Buch, Englisch, 208 Seiten, Format (B × H): 156 mm x 234 mm, Gewicht: 453 g
A Comprehensive Guide
Buch, Englisch, 208 Seiten, Format (B × H): 156 mm x 234 mm, Gewicht: 453 g
ISBN: 978-1-032-85993-4
Verlag: Taylor & Francis Ltd
In this book, readers will find an exhaustive guide on cryptography for modern blockchain technology. It starts with an understanding of how blockchain trust minimization emerges from cryptographic principles for decentralization, security, privacy, or trust in distributed systems. Starting with an understanding of inadequacies in centralized systems, followed by an introduction to blockchain as a technology for trust minimization. Next is an exposition on attack surfaces, real-life security incidents, and what can be derived from real-life experiences in the area of blockchain.
Learners will have a comprehensive insight into digital signatures, ranging from traditional methods to efficient designs that are used in scalable and privacy-preserving blockchains. The text covers the way digital signatures work in the context of Bitcoin, Ethereum, and business networks, with particular emphasis on efficiency, privacy, anonymity, and accountability. A comprehensive treatment is also given to the integration of blockchains with Internet of Things networks, specifically in resource-constrained networks, fog computing, and privacy-preserving networks. The text offers an in-depth analysis of consensus schemes and their connections between the theories of distributed systems and cryptography. We learn about proof of work, proof of stake, hybrid schemes, and cryptographic primitives that underpin them. A key focus of the book is future readiness. Authors have explored post quantum threats to blockchain security and learn how lattice based, hash based, and hybrid cryptographic schemes can protect systems against quantum adversaries. Migration strategies, enterprise frameworks, and experimental deployments are discussed to bridge theory and practice.
This book is written for undergraduate students, researchers, graduate students, and professionals seeking a deep yet structured understanding of blockchain cryptography. It combines theory, real world examples, and design insights to help you analyze, build, and secure next generation blockchain systems.
Zielgruppe
Professional Practice & Development, Professional Reference, and Professional Training
Autoren/Hrsg.
Fachgebiete
- Mathematik | Informatik EDV | Informatik Technische Informatik Computersicherheit Kryptographie, Datenverschlüsselung
- Mathematik | Informatik EDV | Informatik Technische Informatik Computersicherheit Schadprogramme (Viren, Trojaner etc.)
- Mathematik | Informatik EDV | Informatik Computerkommunikation & -vernetzung Netzwerksicherheit
- Mathematik | Informatik EDV | Informatik Technische Informatik Computersicherheit Datensicherheit, Datenschutz
Weitere Infos & Material
Chapter 1: Introduction: The Shortcomings of Centralised Systems. 1.1 Introduction. 1.2 centralised System Architecture. 1.3 Failure Points in centralised Systems. 1.4 The Emergence of Decentralised Solutions. 1.5 Blockchain Technology and Distributed Ledger. 1.6 Pursuing decentralisation. 1.7 The Interplay Between Decentralisation, Scalability, and Security. 1.8 Role of Cryptography in decentralisation. 1.9 Socio-Economic Impact of decentralisation. Chapter 2: Attack Surfaces in Blockchain. 2.1 Introduction. 2.2 Consensus Layer Attacks. 2.3 The Nothing-at-Stake Problem in Proof-of-Stake Systems. 2.4 Cryptographic Primitive Attacks. 2.5 Network-Layer Attacks: Sybil and Eclipse. 2.6 Smart Contract Level Attacks. 2.7 Wallet and Key Management Attacks. Chapter 3: Case Studies of Real-World Attacks. 3.1 Introduction. 3.2 Emerging Attack Vectors. Chapter 4: Fundamentals of Digital Signatures. 4.1 Introduction. 4.2 Significance of Digital Signatures. 4.3 Mechanism of Digital Signatures. 4.4 Digital Signatures in Blockchain Systems. 4.5 Properties of Signature Schemes in Blockchain. 4.6 Representative Signature Schemes in Blockchain. Chapter 5: Blockchain IoT Systems in Resource Constrained Environments. 5.1 Introduction. 5.2 Architecture and Components of the Internet of Things. 5.3 Blockchain Technology. 5.4 Blockchain-Based IoT. 5.5 Fog-Based Blockchain. 5.6 Challenges and Research Directions. 5.7 Simulation Tools for Blockchain-Based IoT and Fog Systems. 5.8 Conclusion. Chapter 6: Privacy Challenges and Cryptographic Solutions in Blockchain-Based IoT. 6.1 Introduction. 6.2 Key Characteristics of B-IoT. 6.3 Discussion. 6.4 Challenges in B-IoT Systems. 6.5 Motivation Behind Privacy Preservation in B-IoT Systems. 6.6 Privacy-Preserving Approaches in B-IoT Systems. Chapter 7: Advanced Digital Signature Schemes for Blockchain Systems. 7.1 Introduction. 7.2 Aggregate Signatures. 7.3 Group Signatures. 7.4 Ring Signatures. 7.5 Blind Signatures. 7.6 Proxy Signatures. 7.7 Comparative Analysis. 7.8 Conclusion. Chapter 8: Enterprise Signature Frameworks and Post Quantum. 8.1 ID-Based Linearly Homomorphic Signature Scheme. 8.2 Multi-Signature Schemes for Enterprise Blockchain Networks. 8.3 Lattice-Based Signature Scheme for Post-Quantum Blockchain. 8.4 Research Directions. Chapter 9: Consensus Mechanisms and Cryptographic Security. 9.1 Introduction. 9.2 Classical Consensus Foundations. 9.3 Proof-of-Work. 9.4 Proof-of-Stake (PoS). 9.5 Hybrid and Advanced Consensus Mechanisms. 9.6 Cryptographic Tools in Consensus. 9.7 Security Threats and Attack Vectors in Consensus. Chapter 10: Blockchain Security in the Post-Quantum Era. 10.1 Introduction. 10.2 Quantum Threat Model for Blockchains. 10.3 Post-Quantum Cryptographic Primitives. 10.4 Integrating PQC into Blockchain Components. 10.5 Migration Strategies and Architectures. 10.6 Case Studies and Experimental Frameworks. Bibliography.




