Sep 2026· International Journal of Information Security· Vol 25· 0 citations· 66 references
TL;DR
A conceptual multi-layer Cybersecurity framework is proposed that introduces a dedicated Reaction Layer enabling coordinated prevention, detection, and mitigation across ADE layers and an initial prototype architecture is outlined.
Abstract
Agriculture 4.0 makes significant use of interconnected sensors, autonomous farm equipment, cloud-based farm management systems, and data-driven decision-making. Even though these tools make farm operations more productive and sustainable, they also expose farm equipment, Internet of Things (IoT) devices, supply-chain management systems, and farm data to Cybersecurity attacks. Cybersecurity incidents in the agricultural sector may result in operational disruption, financial loss, and the compromise of data sovereignty. To address these risks, this study adopts a three-stage analytical approach consisting of challenge identification through literature and infrastructure analysis, prioritisation of the identified challenges, and systematic mapping onto a four-layer Agricultural Data-sharing Ecosystem (ADE) architecture comprising perception, network, edge, and cloud/application layers. The analysis identifies six structural challenges driving Cybersecurity risks in agriculture: data management, data governance, integration and interoperability, data privacy and security, knowledge gaps, and infrastructure limitations. Based on these findings, a conceptual multi-layer Cybersecurity framework is proposed that introduces a dedicated Reaction Layer enabling coordinated prevention, detection, and mitigation across ADE layers. The operational logic of the Reaction Layer is formalised through the Reaction Layer Cross-Layer Coordination (RLCC) algorithm, which specifies the sequential coordination of prevention, detection, mitigation, and audit actions across the ADE infrastructure layers, and links each response action to the identified challenges. To support the transition from conceptual design to practical deployment, an initial prototype architecture is outlined. It identifies which components can use existing technologies and which require new development. It also defines the scenarios and metrics that will be used to evaluate the framework.
By combining digital sensing, network connectivity, data-driven analyses, cloud services, and automated controls, smart farming has been increasingly adopted in agricultural production. Although these technologies have improved the precision and efficiency of farm management, they also increase cybersecurity exposure a...
Sun-Mi Kong, C. Park, Kyung Jun Lee et al.· Electronics· 0 citations
An integrated framework that bridges normative data governance in smart farming with empirical, honeynet-derived threat intelligence is introduced, demonstrating that effective SF cybersecurity requires empirically calibrated rather than purely policy-driven frameworks.
Radwan Rouzky, A. Sarrafzadeh, Evelyn Sowells-Boone et al.· Applied Sciences· 0 citations
A comprehensive framework for analyzing CS challenges in PA is introduced by systematically identification and classification key CS parameters and its sub-parameters, threats, risks, and their potential impacts across advanced technique and drone-enabled agricultural settings.
Shubham Kumar, Mohammad Faisal· International journal of com...· 0 citations
The findings indicate that the primary value of AgTechs lies not only in generating large volumes of data but also in transforming dispersed information into actionable knowledge that supports more efficient, predictive, and integrated decision-making.
Maíse Dos Santos Macário, Isis Regina Santos de Oliveira· Revista Ibero-Americana de H...· 0 citations
Smart hydroponic information systems integrate hydroponic cultivation with Internet of Things (IoT), sensing, automation, real-time monitoring, and data-driven decision support. Although prior research has largely focused on technical development, governance factors affecting implementation, adoption, and long-term sus...
Felicia Evan, F. L. Gaol, D. N. Utama et al.· International Conferences on...· 0 citations
The emergence of cyber-physical systems in agricultural production has created unprecedented opportunities for precision farming while simultaneously introducing substantial security vulnerabilities. This research addresses the critical challenge of distinguishing sensor anomalies from malicious cyber-attacks in resour...
Anudeep Sama, Sidhvita Kaithepalli, Odime Anjali et al.· BIO Web of Conferences· 0 citations
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