PaB-PIF: A Hybrid Architecture to Evaluate Mutable and Immutable Blockchains in IoT–Fog Networks

Blockchain provides secure and decentralized data storage. Normal blockchains permanently store data. Mutable blockchains allow users to change data, but this reduces tamper resistance. This paper tests both methods in PaB-PIF, a hybrid architecture for IoT-Fog networks. Our design uses an immutable mainchain in the cloud layer and mutable sidechains in the fog layer. We analyze throughput, latency, and tamper resistance using math models and simulations. Results show that blockchain greatly improves network security. Without blockchain, the network has zero tamper resistance. The mutable blockchain in the fog layer has a tamper resistance of 0.58. The immutable blockchain in the cloud layer reaches 0.99. However, this extra security increases latency and reduces throughput. The mutable blockchain has lower latency, so it is a good fit for the fog layer. The immutable blockchain provides maximum security, which is best for the cloud layer. This trade-off works well for IoT systems like the Internet of Vehicles, where data integrity and legal rules are essential. We also compare PaB-PIF with an IoT-Fog network that has no blockchain.

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Publication Details

Journal
Applied Sciences
Published
2026-08-26
DOI
https://doi.org/10.3390/app16178493
Primary Topic
Blockchain Technology Applications and Security
Type
article
Field-Weighted Citation Impact
0.00

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article

PaB-PIF: A Hybrid Architecture to Evaluate Mutable and Immutable Blockchains in IoT–Fog Networks

Mauro Iacono, Saeed Javanmardi, Marco Scarpa, Mohammad Sadeghzadeh et al.
Applied Sciences
Blockchain Technology Applications and Security
article

PaB-PIF: A Hybrid Architecture to Evaluate Mutable and Immutable Blockchains in IoT–Fog Networks

Mauro Iacono, Saeed Javanmardi, Marco Scarpa, Mohammad Sadeghzadeh, Bahareh Pahlevanzadeh
article en

Abstract

Blockchain provides secure and decentralized data storage. Normal blockchains permanently store data. Mutable blockchains allow users to change data, but this reduces tamper resistance. This paper tests both methods in PaB-PIF, a hybrid architecture for IoT-Fog networks. Our design uses an immutable mainchain in the cloud layer and mutable sidechains in the fog layer. We analyze throughput, latency, and tamper resistance using math models and simulations. Results show that blockchain greatly improves network security. Without blockchain, the network has zero tamper resistance. The mutable blockchain in the fog layer has a tamper resistance of 0.58. The immutable blockchain in the cloud layer reaches 0.99. However, this extra security increases latency and reduces throughput. The mutable blockchain has lower latency, so it is a good fit for the fog layer. The immutable blockchain provides maximum security, which is best for the cloud layer. This trade-off works well for IoT systems like the Internet of Vehicles, where data integrity and legal rules are essential. We also compare PaB-PIF with an IoT-Fog network that has no blockchain.

Applied SciencesVol. 16(17)
University of Messina (IT), Bu-Ali Sina University (IR), University of Campania "Luigi Vanvitelli" (IT), Technological University Dublin (IE)
European Commission
Openalex Percentile: Top 4%
Blockchain Technology Applications and Security
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