The project aims to develop a secure cloud storage system using Heisenberg group-based digital signatures for enhanced data security, ensuring non-repudiation, confidentiality, and resistance to unauthorized access. It is designed to withstand threats like quantum computing, be scalable for growing data and users, and offer a user-friendly interface for seamless data management.
In this project, we present a secure cloud-based data storage solution that employs Heisenberg group-based digital signatures to ensure the integrity and authenticity of stored data. Users can upload various types of data, including files, videos, and music, to the cloud. To secure communication between the user and the server, the system utilizes Heisenberg group-based digital signatures, which provide cryptographic robustness, data integrity, and non-repudiation. This approach leverages advanced group-theoretic cryptography to protect against unauthorized access and safeguard data against emerging security threats, including quantum attacks. The proposed system offers a secure and scalable solution for cloud data storage, making it resilient to future cryptographic challenges.
Keywords: Cloud Storage, Heisenberg Group, Digital Signatures, Data Integrity, Authentication, Cryptography, Non-repudiation, Secure Communication, Quantum Security, Data Protection.
NOTE: Without the concern of our team, please don't submit to the college. This Abstract varies based on student requirements.

H/W CONFIGURATION:
Processor - I3/Intel Processor
Hard Disk - 160GB
Key Board - Standard Windows Keyboard
Mouse - Two or Three Button Mouse
Monitor - SVGA
RAM - 8GB
S/W CONFIGURATION:
Operating System : Windows 7/8/10
Server side Script : HTML, CSS, Bootstrap & JS
Programming Language : Python
Libraries : Django
IDE/Workbench : VSCODE
Technology : Python 3.10+