ABCD: ADVANCED BLOCKCHAIN DSR ALGORITHM FOR MANET TO MITIGATE THE DIFFERENT SECURITY THREATS

ABCD: advanced blockchain DSR algorithm for MANET to mitigate the different security threats

ABCD: advanced blockchain DSR algorithm for MANET to mitigate the different security threats

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Abstract Mobile ad hoc networks (MANETs) facilitate data communication across multiple nodes and hop stations, characterized by their dynamic topology.This inherent flexibility, however, makes MANETs vulnerable to various security threats, notably blackhole and wormhole attacks, where malicious nodes can intercept and manipulate data.This study investigates the security vulnerabilities of MANETs, particularly against blackhole, Sybil, and wormhole attacks, and introduces the Advanced Blockchain Dynamic Source Routing (ABCD) algorithm to address these challenges.

Motivated Bread Mix by the need for robust and decentralized security solutions in MANETs, the proposed algorithm integrates blockchain technology and homomorphic encryption to secure data communication without intermediate decryption.The ABCD algorithm leverages Dijkstra’s algorithm for optimal routing and employs a tamper-proof, decentralized data storage approach.Comparative analysis under attack scenarios reveals that the ABCD algorithm outperforms the standard DSR protocol across multiple quality of service metrics, demonstrating a significant Grooming improvement in MANET security over equivalent studies.

The packet delivery rate is also improved from 81 to 92% using the modified ABCD algorithm.

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