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Optimal Resource Utilization in Hyperledger Fabric: A Comprehensive SPN-Based Performance Evaluation Paradigm

Hyperledger Fabric stands as a leading framework for permissioned block-chain systems, ensuring data security and audit-ability for enterprise applications. As applications on this platform grow, understanding its complex configuration concerning various block-chain parameters becomes vital. These c...

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Main Authors: Melo, Carlos, Goncalves, Glauber, Silva, Francisco A., Feitosa, Leonel, Fe, Iure, Soares, Andre, Choi, Eunmi, Nguyen, Tuan Anh, Min, Dugki
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creator Melo, Carlos
Goncalves, Glauber
Silva, Francisco A.
Feitosa, Leonel
Fe, Iure
Soares, Andre
Choi, Eunmi
Nguyen, Tuan Anh
Min, Dugki
description Hyperledger Fabric stands as a leading framework for permissioned block-chain systems, ensuring data security and audit-ability for enterprise applications. As applications on this platform grow, understanding its complex configuration concerning various block-chain parameters becomes vital. These configurations significantly affect the system's performance and cost. In this research, we introduce a Stochastic Petri Net (SPN) model to analyze Hyper-ledger Fabric's performance, considering variations in block-chain parameters, computational resources, and transaction rates. We provide case studies to validate the utility of our model, aiding block-chain administrators in determining optimal configurations for their applications. A key observation from our model highlights the block size's role in system response time. We noted an increased mean response time, between 1 to 25 seconds, due to variations in transaction arrival rates.
doi_str_mv 10.1109/NOMS59830.2024.10575284
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source IEEE Xplore All Conference Series
subjects blockchain
capacity planning
Computational modeling
Data security
Distributed ledger
Fabrics
Performance evaluation
Petri net
Petri nets
Stochastic processes
title Optimal Resource Utilization in Hyperledger Fabric: A Comprehensive SPN-Based Performance Evaluation Paradigm
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