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February 27, 2026SHILAP Revista de lepidopterología3 citationsOpen Access

QBUILD: Quantum-Resistant Blockchain Architecture for Secure and Transparent Construction Supply Chains in the Post-Quantum Era

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SDShirsendu DuttaRBRajesh BoseSRSandip Roy

Key Points

  • This research aims to address challenges in construction supply chains by developing a quantum-resistant blockchain framework.
  • Developed a four-phase systematic approach for Blockchain-based Construction Supply Chain (BCSC) framework.
  • Designed Hyperledger Fabric private blockchain integrated with IoT for real-time tracking.
  • Implemented smart contracts for automated procurement, inventory management, and payments.
  • Utilized quantum-resilient cryptography featuring lattice-based encryption and post-quantum secure digital signatures.
  • Conducted comparative performance analysis with conventional blockchain solutions at a multinational construction company.
  • Achieved 50% better security resiliency compared to traditional solutions.
  • Reduced transaction latency by 40%.
  • Improved traceability efficiency by 35%.

Abstract

The control of insecurity, transparency, and real-time tracking of assets are the urgent challenges of the construction supply chain because of the complex multi-stakeholder structure and the emergence of quantum computing threats. This paper applies a four-phase systematic approach to developing a Blockchain-based Construction Supply Chain (BCSC) framework, which includes: (1) architectural design of Hyperledger Fabric private blockchain with IoT-enabled real-time tracking, (2) smart contracts to process automated procurement, inventory, and payment, (3) quantum-resilient cryptography based on lattice-based encryption, approachable post-quantum secure digital signatures and (4) lightweight Federated Learning models to predictive analytics. The framework was tested with comparative performance analysis of the conventional blockchain solutions and confirmed by the real-world application of the same at SIL, a multinational construction company. The experiment outcomes prove significant improvements: security resiliency is 50% better, transactions latency decreases by 40% and traceability efficiency increases by 35% as compared to traditional blockchain-based supply chain solutions.

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Cite This Study

Dutta et al. (2026) studied this question.

synapsesocial.com/papers/69a13571ed1d949a99abf5a4https://doi.org/10.1080/08839514.2026.2630461
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