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March 25, 2026Procedia Computer Science0 citationsOpen Access

Scalable and Interoperable Hybrid Blockchain Framework: Architectural Layers and Consensus Mechanism Design

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RGR. GurunathDSDebabrata SamantaBEB. P. Etemi

Key Points

  • The aim is to address limitations in traditional blockchain systems through a novel hybrid architecture.
  • Proposed a seven-layer architecture for blockchain systems.
  • Implemented a hybrid consensus combining Proof of Stake and Practical Byzantine Fault Tolerance.
  • Utilized rollups, sharding, and interoperability protocols like Polkadot and IBC.
  • Increased transaction throughput and energy efficiency.
  • Enhanced cross-chain communication and modular extensibility.
  • Applicable in finance, IoT, and healthcare use cases.

Abstract

In this paper, a scalable interoperable hybrid blockchain systems based on a novel seven-layer architecture is proposed. The model thereby solves the three problems that have restricted the development of traditional blockchains, i.e., low transaction throughput, inability of cross-chain communication, architectural rigidity, by clearly dividing responsibilities into separate layers dedicated to core infrastructure, operation systems, and application ecosystems. It applies a hybrid consensus approach where Proof of Stake (PoS) is adopted for global finality and Practical Byzantine Fault Tolerance (PBFT) is employed for shard-level consensus, offering energy efficiency as well as fault tolerance. With rollups, sharding, and interoperability protocols e.g. Polkadot, and IBC, it boasts high performance, modular extensibility and app-ability for real-world use-cases such as finance, IoT and healthcare. The proposed architecture would act as a basis for development in AI-driven smart contracts, privacy-preserving computation and quantum-secured consensus.

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Cite This Study

Gurunath et al. (2026) studied this question.

synapsesocial.com/papers/69c37afeb34aaaeb1a67cfd8https://doi.org/10.1016/j.procs.2026.02.408
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