Encryption And Decryption Final Year Projects with Source Code

Encryption And Decryption Final Year Projects for BE, BTech, ME, MSc, MCA and MTech final year engineering students. These Encryption And Decryption projects give practical experience and help complete final-year submissions. All projects follow IEEE standards and each project includes source code, project thesis report, presentation, project execution and explanation.

Encryption And Decryption Final Year Projects

  1. Enhancing Breast Cancer Classification in Histopathological Images through Federated Learning Framework
    This study develops an automated system to detect breast cancer from medical images. It secures patient data by encrypting images and storing them safely using advanced machine learning techniques. The system then classifies the images using a deep learning model, which is optimized for better accuracy. Tests show the method is highly effective, achieving over 95% accuracy and reliability.
  2. A Blockchain Based Access Control Framework for Cyber-Physical-Social System Big Data
    This project focuses on making large amounts of data from cyber, physical, and social systems more secure. It uses blockchain to control who can access the data, replacing traditional centralized methods that are easy to tamper with. The system tracks permissions on the blockchain and uses encryption to protect privacy. Experiments show that this approach is effective and keeps data safe while allowing secure access.
  3. PSDS–Proficient Security Over Distributed Storage A Method for Data Transmission in Cloud
    This project focuses on keeping data safe when stored in the cloud. It introduces a method called PSDS, which separates sensitive and normal data. Sensitive data is split, encrypted, and stored across multiple clouds, while normal data is stored in a single cloud. Tests show that PSDS protects against various cyberattacks and is faster than older encryption methods.
  4. Chaotic-Map Based Encryption for 3D Point and 3D Mesh Fog Data in Edge Computing
    This project focuses on protecting sensitive 3D data stored in fog computing systems. It uses a special method based on chaotic behavior to encrypt the data, making it very hard for attackers to access. The system is tested to show strong resistance against common attacks and performs better than previous methods. Overall, it ensures safer storage and privacy of critical 3D information in fog environments.
  5. Applicable Image Security Based on Computational Genetic Approach and Self-Adaptive Substitution
    This project focuses on keeping digital images safe during storage and transmission. It introduces a new method that scrambles and secures images using advanced computational and chaotic techniques. The approach was tested on standard image datasets and showed strong resistance against hacking attempts. Overall, it provides a reliable solution for protecting multimedia data in modern communication systems.
  6. A Lightweight Authentication Framework for Fault-Tolerant Distributed WSN
    The project builds a secure way for small wireless devices to share data safely. It uses special math-based methods to protect messages while keeping the process fast and light. The system is tested on different network setups and uses parallel processing to make communication quicker. The results show that the method saves time and memory, making it suitable for reliable sensor networks.
  7. An Efficient Authenticated Elliptic Curve Cryptography Scheme for Multicore Wireless Sensor Networks
    This project focuses on improving the lifespan and security of Wireless Sensor Networks. It groups sensors together and uses multicore sensors to reduce power consumption. The system applies advanced cryptography to keep data secure and verify devices. Tests show it is energy-efficient, fast, scalable, and resistant to attacks.
  8. EN-LAKP Lightweight Authentication and Key Agreement Protocol for Emerging Networks
    This project focuses on making wireless sensor networks more secure and efficient using Software Defined Networking. It introduces a Lightweight Authentication and Key Agreement Protocol to protect communication between devices. The system is tested for security using formal methods and shows improved performance compared to similar protocols. It helps prevent attacks while reducing computing and communication overhead.
  9. Side-Channel Resistant 2048-Bit RSA Implementation for Wireless Sensor Networks and Internet of Things
    This project shows that strong RSA encryption with a 2048-bit key can run efficiently on a small, low-power microcontroller called MSP430. The researchers used special mathematical techniques to make encryption fast and secure. Their system can encrypt data in 0.14 seconds and decrypt in 7.56 seconds, which is faster than previous methods on similar devices. It also includes protections against attacks that try to steal keys by analyzing power use.
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Encryption And Decryption Project Synopsis & Presentation

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