Jul 2026· International Journal of Drug Delivery Technology· Vol 16· 0 citations· 12 references
TL;DR
The results show that the efficiency of blockchain-based IoT systems can be effectively enhanced through redesigning access-control processes instead of adding complexity to the system, which makes the framework proposed in the study applicable in the context of the resource-constrained IoT solutions.
Abstract
The blistering development of Internet of Things (IoT) devices has added pressure on the effective sharing of data,
maintenance of privacy, and effective control of access. Although blockchain technology offers trust and
decentralization, its direct connection to IoT systems usually introduces high computational cost and latency as a
result of the repetition of smart contract execution and logging of every transaction.
The current paper suggests a lightweight smart contract-based secure data-sharing model of the IoT that optimizes
access control through the application of selective verification and minimized transaction logging. The proposed
approach does not verify all verification procedures on each request, but only the necessary parameters and
document only important access events on the blockchain, reducing the additional computation and storage costs.
To determine the effectiveness of the proposed framework relative to a more traditional access-control framework,
a simulation-based analysis is performed that compares the proposed framework with a standard access-control
framework in terms of performance resources like response time, operating overhead, and authorization efficiency.
The findings indicate that the suggested solution produces about 50% decrease in response time and processing
cycles and ensures safe and regulated access to data.
The results show that the efficiency of blockchain-based IoT systems can be effectively enhanced through
redesigning access-control processes instead of adding complexity to the system, which makes the framework
proposed in the study applicable in the context of the resource-constrained IoT solutions.
With the rapid increase of Internet of Things (IoT) devices, it is a challenge to ensure secure and reliable device authentication. Conventional blockchain-based solutions provide immutability and transparency, but dynamic trust management is not present, resulting in limited scalability in heterogeneous IoT environmen...
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A comprehensive analysis and evaluation of the current status of blockchain-based access control on the Internet of Things (IoT), including various approaches, models, standards, platforms, and potential applications for implementing blockchain-based access control in IoT.
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The development of the Industrial Internet of Things (IIoT) results in colossal amounts of vulnerable operational data that needs to be exchanged safely in distributed logistics networks. Centralized cloud architectures introduce latency, scalability, and privacy bottlenecks. This paper proposes a decentralized hierarc...
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