Quantum-resistant secure communication for critical infrastructure – Complete Phd and Masters Thesis

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Introduction

The increasing reliance on digital communication systems in critical infrastructure such as energy, transportation, and financial sectors has raised concerns about the vulnerability of these systems to cyber attacks. Traditional encryption methods, such as RSA and ECC, are at risk of being compromised by quantum computers, which have the potential to break current encryption schemes. Quantum-resistant encryption is essential to ensure the security and privacy of critical infrastructure communications in the post-quantum era.

Chapter 1: Introduction
1.1 Introduction
1.2 Background of study
1.3 Problem Statement
1.4 Objective of study
1.5 Limitation of study
1.6 Scope of study
1.7 Significance of study
1.8 Structure of the Thesis
1.9 Definition of terms

Chapter 2: Literature Review
2.1 Overview of quantum computing
2.2 Quantum-safe cryptographic algorithms
2.3 Current challenges in quantum-resistant communication
2.4 Previous research on quantum-resistant encryption for critical infrastructure
2.5 Quantum key distribution for secure communication
2.6 Quantum-resistant secure communication protocols
2.7 Quantum-resistant encryption standards
2.8 Comparison of different quantum-resistant encryption techniques
2.9 Potential threats to critical infrastructure
2.10 Best practices for securing critical infrastructure communication

Chapter 3: Research Methodology
3.1 Research design
3.2 Data collection methods
3.3 Data analysis techniques
3.4 Selection of participants
3.5 Ethical considerations
3.6 Pilot study
3.7 Data validation
3.8 Timeframe for research
3.9 Budget for research

Chapter 4: Discussion of Findings
4.1 Analysis of survey responses
4.2 Comparison of different quantum-resistant encryption methods
4.3 Implementation challenges of quantum-resistant communication
4.4 Recommendations for securing critical infrastructure communication
4.5 Future research directions
4.6 Policy implications
4.7 Case studies of successful quantum-resistant communication implementations
4.8 Real-world applications of quantum-resistant encryption technologies

Chapter 5: Conclusion and Summary
In this chapter, the key findings of the research will be summarized, along with conclusions drawn from the data analysis. Recommendations for future research and practical implications for the implementation of quantum-resistant secure communication in critical infrastructure will be discussed.

Thesis Overview:

The research focuses on examining the current state of quantum-resistant secure communication for critical infrastructure, with a particular emphasis on the challenges and opportunities presented by quantum computing. The study will provide a comprehensive review of existing literature on quantum-resistant encryption techniques, evaluate the strengths and weaknesses of different encryption methods, and propose recommendations for securing critical infrastructure communication in the post-quantum era. The research methodology will involve a combination of quantitative and qualitative data collection methods, including surveys, interviews, and case studies. The findings of the research will contribute to the development of best practices for implementing quantum-resistant secure communication in critical infrastructure to mitigate cybersecurity risks.

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