Cloud Computing for Blockchain Scalability with Integrated Digital Signature Algorithms and Holographic Visualization
DOI:
https://doi.org/10.70917/ijcisim-2026-3626Keywords:
Blockchain, Cloud Computing, Digital Signatures, Consensus Algorithms, RSA, DSA, Holographic Visualization, Blockchain ScalabilityAbstract
Blockchain technologies are game changers in the managed security and transparency of data. However, the lack of scalability and performance issues continues to hinder widespread adoption of the technology. For this paper, we focuses on the framework of a cloud integrated blockchain technology focusing on the RSA and DSA digital signature algorithms and holographic visualization technology, to enhance scalability and security, as well as increase user engagement. The model proposed in this paper deploys adaptive cloud optimized consensus mechanism of PoW, PoS, DPoS, and PoA as adaptive resource management which provides improved scalability and throughput. The optimization hinged cryptography of RSA and DSA guarantees transaction verification and defensible data during the the authentication and signing of cloud documents.Holographic visualization, as a user interface, offers the possibility of monitoring and interacting with the system as a visualization tool in system analysis. The experimental analysis shows improvement in transaction throughput of up to 40%, lower latency of around 30%, and higher energy saving with respect to conventional blockchains. The cloud-based secure and scalable user-centric operations of the proposed architecture greatly advanced the potential of decentralized applications and is a major step towards improved blockchain technology.