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Governance Models for Blockchain Integrated IoT Ecosystems Rizki Indrawan; Arista Ratih; Harry Agustian; Richard Evans
Blockchain Frontier Technology Vol. 5 No. 2 (2026): Blockchain Frontier Technology
Publisher : IAIC Bangun Bangsa

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.34306/bfront.v5i2.974

Abstract

The rapid advancement of the Internet of Things (IoT) has led to the creation of large-scale interconnected networks of smart devices capable of autonomously collecting, processing, and exchanging data in real time across diverse application domains. While this development offers significant benefits, it also introduces critical challenges related to data security, privacy protection, interoperability, and the increasingly complex governance of distributed IoT systems. Traditional centralized governance approaches often fail to address these issues effectively due to single points of failure, limited transparency, and insufficient trust mechanisms. The integration of blockchain technology into IoT ecosystems provides a promising alternative by leveraging decentralized architecture, immutable ledgers, transparency, and tamper-resistant features that enhance accountability and trust. This study aims to identify and design an appropriate governance model for blockchain-integrated IoT systems that balances security, operational efficiency, and decentralization. The research adopts a conceptual and qualitative approach through a systematic literature analysis and the synthesis of existing governance, blockchain, and IoT frameworks to develop a structured governance model. The proposed framework defines institutional roles, policy structures, decision-making processes, and control mechanisms among participating entities. The results demonstrate that a blockchain-based governance model enhances system security, operational efficiency, and inter-organizational trust by reducing reliance on centralized authorities and improving data integrity. In addition, the use of smart contracts enables automated policy enforcement, transparent coordination, and sustainable system operations, supporting scalable and resilient governance for future blockchain IoT ecosystems.
Implementation of Blockchain Technology to Enhance the Security of Online Payment Transactions Ariesya Aprillia; Denok Wahyudi Setyo Rahayu; Arista Ratih; Thomas Green
Blockchain Frontier Technology Vol. 6 No. 1 (2026): Blockchain Frontier Technology
Publisher : IAIC Bangun Bangsa

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.34306/b-front.v6i1.1026

Abstract

The rapid growth of digital financial services has significantly increased the volume of online payment transactions, while simultaneously intensifying concerns related to transaction security, data integrity, privacy protection, and fraud due to the limitations of centralized payment architectures, which remain vulnerable to cyberattacks, data manipulation, and single points of failure. This study aims to analyze the role of blockchain technology in enhancing the se- curity of online payment transactions by examining its core characteristics, including decentralization, transparency, immutability, and smart contracts. This research adopts a conceptual and descriptive comparative approach by synthesizing recent peer-reviewed literature to evaluate blockchain-based payment systems in comparison with conventional centralized systems. The findings indicate that blockchain implementation improves transaction security by reducing fraud risks, eliminating single points of failure, ensuring tamperresistant records, and enhancing transparency and traceability, thereby increasing user trust. These improvements contribute to more reliable, transparent, and resilient digital payment infrastructures. Furthermore, blockchain technology supports the SDGs 8 (Decent Work and Economic Growth), SDGs 9 (Industry, Innovation, and Infrastructure), and SDGs 16 (Peace, Justice, and Strong Institutions), by promoting transparency, accountability, and long-term stability in digital financial ecosystems.
KAMPANYE DIGITAL KONSERVASI FAUNA ENDEMIK KABUPATEN MERANGIN BERBANTUAN AI DAN MEDIA SOSIAL BAGI MASYARAKAT DIGITAL Amrianto; Arista Ratih; Pitri Handayani; Eni Yulianti; Leni Marlina; Eko Wulandari; Schintia Yushika Anjelita; Budi Setiawan; Heri Hardinata
AbdiMasya | Hira Institute Vol. 4 No. 1 (2026): Juli 2026
Publisher : Hira Institute

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Abstract

Conserving endemic fauna requires innovative approaches capable of reaching a broad audience cost-effectively. Merangin Regency is home to various protected endemic species such as the Great Argus (Argusianus argus) and the siamang (Symphalangus syndactylus) that continue to face threats. This community service initiative aimed to develop a digital conservation campaign by leveraging artificial intelligence (AI) and the social media platform for educational purposes. The implementation process involved three stages preparation, execution, and evaluation utilizing a digital ethnography approach that included social media metric analysis and the calculation of Engagement Rate (ER) based on reach. Six scientific articles were identified and used as primary sources for content development. Based on this material, ten educational posters were created and underwent content and design validation prior to publication. During the evaluation period, the posts garnered 4,590 views, 104 likes, 42 shares, 6 saves, and 1 comment, achieving an ER (Reach) of 3.33%, which falls into the "good" category. These findings demonstrate that combining AI and social media serves as an effective, engaging, cost-efficient, and far-reaching medium for disseminating research findings and promoting conservation education.
Leveraging Blockchain Technology to Enhance Academic Data Security and Transparency Ariesya Aprillia; Dariari Robert; Arista Ratih
Jurnal MENTARI: Manajemen, Pendidikan dan Teknologi Informasi Vol 5 No 1 (2026): September
Publisher : Pandawan Sejahtera Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33050/mentari.v5i1.1157

Abstract

The increasing digitalization of higher education has created growing demands for secure and transparent academic data management. As a background, conventional academic information systems remain vulnerable to data manipulation, unauthorized access, and difficulties in verifying the authenticity of academic records. Therefore, the objective of this study is to investigate the role of blockchain technology in enhancing academic data security and transparency within higher education institutions. The method employed in this research is a quantitative approach using a survey questionnaire distributed to 173 respondents consisting of students, academic staff, and administrative personnel from various higher education institutions. The collected data were analyzed using Structural Equation Modeling (SEM) to examine the relationships between blockchain technology adoption, academic data security, and academic transparency. The results reveal that blockchain technology has a significant positive effect on academic data security by providing decentralized data storage, cryptographic protection, and immutable transaction records. In addition, blockchain implementation significantly improves academic transparency by enabling reliable verification, traceability, and authenticity of academic information and credentials. The findings suggest that blockchain technology can minimize the risk of data tampering while strengthening stakeholder trust in academic information systems. In conclusion, blockchain technology serves as an effective solution for improving academic data security and transparency, contributing to the development of a trustworthy and data-driven governance framework in higher education institutions.