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Using IPFS for Automatic Digital Intellectual Property Registration in Web3 Platforms Yusuf Tojiri; Maulana Arif Komara; Alfri Adiwijaya; Nasrul Hidayat; Cristiano Gatot Wagner; Marviola Hardini
APTISI Transactions on Management (ATM) Vol 10 No 2 (2026): ATM (APTISI Transactions on Management: May)
Publisher : Pandawan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33050/atm.v10i2.2616

Abstract

This study proposes an IPFS-based system for automatic digital intellectual property registration within Web3 platform environments. The rapid development of digital technology has encouraged the transformation of Intellectual Property Rights (IPR) protection from manual systems to more secure and efficient digital mechanisms. However, current IPR registration processes remain centralized, slow, and vulnerable to data tampering. Based on this issue, this study aims to design and test an automatic IPR registration system using the InterPlanetary File System (IPFS) as a decentralized storage solution. This research employs a software engineering method with a prototyping approach that includes the design of a user interface, integration of the IPFS API, implementation of an automatic hash-generation system, metadata storage in a database, and issuance of digital certificates. Testing results show that the system can automatically register digital works, generate unique and consistent file hashes, upload files to IPFS with an average upload time of less than two seconds, and provide global accessibility through a distributed network. In addition, the system is capable of validating the authenticity of a work by matching the hash and metadata listed in the digital certificate. Based on these findings, it can be concluded that the use of IPFS in digital IPR registration systems is effective in enhancing security, efficiency, and transparency, although further development is required in relation to integration with national legal frameworks and formal legal recognition.
Application of Green Technology in Digital Supply Chains to Improve Sustainability Performance Aswadi Jaya; Ramzi Zainum Ikhsan; Nasrul Hidayat; Alfri Adiwijaya; Te Hemi Zane
Technomedia Journal Vol 11 No 1 (2026): June
Publisher : Pandawan Incorporation, Alphabet Incubator Universitas Raharja

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33050/tmj.v11i1.2669

Abstract

The rapid development of the digital industry has encouraged companies to transform conventional supply chain systems into digital supply chains that are more transparent, efficient, and data-driven. However, this transformation still faces sustainability challenges, particularly related to energy consumption, carbon emissions, operational waste, and inefficient resource utilization. This study aims to analyze the application of green technology in digital supply chains and examine its influence on sustainability performance through the mediating role of digital supply chain systems. A quantitative approach was employed by collecting data from 120 respondents involved in supply chain activities, including business actors, logistics managers, operational staff, procurement staff, distribution staff, and managerial decision-makers in the Jabodetabek area. The data were gathered using Likert-scale questionnaires and analyzed using the SEM-PLS method to test the relationships among green technology, digital supply chain, and sustainability performance. The findings show that green technology has a positive effect on digital supply chains and sustainability performance. Digital supply chains also positively influence sustainability performance and mediate the relationship between green technology and sustainability performance. The model explains 46.4% of the variance in digital supply chains and 68.1% of the variance in sustainability performance. he integration of green technology with digital supply chains can strengthen operational efficiency, reduce environmental impact, improve transparency, and sup- port sustainable business practices. This study contributes to the development of sustainability-oriented supply chain strategies aligned with SDG 9, SDG 12, and SDG 13.