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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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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 |
format | conference_proceeding |
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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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