Blockchain Integrated Secure Image Steganography using IPFS and Ethereum Sepolia Testnet

Authors

  • Dr. A. Radhika Professor, SRK Institute of Technology, NTR, Andhra Pradesh, India Author
  • D. Avinash Student, SRK Institute of Technology, NTR, Andhra Pradesh, India Author
  • D. Sowjanya Student, SRK Institute of Technology, NTR, Andhra Pradesh, India Author
  • K. Karthik Student, SRK Institute of Technology, NTR, Andhra Pradesh, India Author
  • A. Venkat raj Student, SRK Institute of Technology, NTR, Andhra Pradesh, India Author

DOI:

https://doi.org/10.47392/IRJAEM.2026.0039

Keywords:

Image Steganography, Blockchain, Ethereum, IPFS, Data Security, SHA-256

Abstract

The increasing use of digital communication has made it essential to maintain the confidentiality, integrity, and authenticity of sensitive information. Conventional image steganographic methods offer data hiding in digital images, but they fail to offer effective tamper proofing and secure ownership verification. To overcome these issues, this paper presents a Blockchain-Integrated Secure Image Steganography system using IPFS and Ethereum. In the proposed system, secret data is hidden within digital images using a Least Significant Bit (LSB) image steganographic method developed in Python. The stego images are then stored in the Inter Planetary File System (IPFS) for efficient and decentralized data storage. To ensure data integrity and secure access, the cryptographic hash values of the stego images and their corresponding IPFS Content Identifiers (CIDs) are securely stored on the Ethereum blockchain using smart contracts. The use of blockchain technology provides immutability, transparency, and tamper resistance, and IPFS provides decentralized storage without depending on centralized storage servers. The proposed system is validated to offer high image quality with negligible distortion and robust data security and traceability. This system is applicable for secure data sharing in confidential communication, digital forensics, and secure document transfer.

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Published

2026-03-05