Maulana Asykari Muhammad
Sistem Informasi, UIN Syarif Hidayatullah Jakarta

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SELECTION OF SCRYPT ALGORITHM ASICS USING THE WEIGHTED AGGREGATED SUM PRODUCT ASSESSMENT (WASPAS) METHOD Maulana Asykari Muhammad; Ryan Prananda Hikmahanto; Muhammad Zidan Fatonie
JATI (Jurnal Mahasiswa Teknik Informatika) Vol. 10 No. 2 (2026): JATI Vol. 10 No. 2
Publisher : Institut Teknologi Nasional Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36040/jati.v10i2.17552

Abstract

The cryptocurrency mining industry faces significant challenges due to the increasing difficulty of the Scrypt algorithm, which necessitates highly efficient hardware to maintain profitability. Selecting the optimal Application-Specific Integrated Circuit (ASIC) is a complex Multi-Criteria Decision Making (MCDM) problem because it involves conflicting variables such as hashrate, power consumption, energy efficiency, price, and daily profit. This study aims to assess this complexity and provide a systematic decision-making framework by determining the most optimal ASIC device for the Scrypt algorithm. We implemented the Weighted Aggregated Sum Product Assessment (WASPAS) method, combining the Weighted Sum Model (WSM) and Weighted Product Model (WPM) to evaluate and rank ten recent ASIC models to enhance ranking accuracy and stability. The results indicated the Bitmain Antminer L9 (16 GH/s) as the optimal device with a preference value of 0.742. Conversely, the device with the highest raw hashrate, the VolcMiner D1 Hydro, only ranked 7th. This proves that superior computational speed does not guarantee operational viability when energy efficiency and investment costs are factored in. These findings can serve as a reference for a systematic decision-making framework for miners to prioritize sustainable hardware, and provide technical insights for manufacturers regarding market preferences for energy-efficient designs.
Risk Management and Sharia Compliance in Crypto Staking: A Systematic Literature Review Maulana Asykari Muhammad; Fitroh Fitroh; Rinda Hesti Kusumaningtyas
Journal of Applied Informatics and Computing Vol. 10 No. 4 (2026): August 2026
Publisher : Politeknik Negeri Batam

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30871/jaic.v10i4.13241

Abstract

The adoption of Decentralized Finance (DeFi) introduces multidimensional risks that challenge institutional stability and Sharia jurisprudential standards. Existing studies often isolate technical security measures from theological compliance, creating a gap in governing digital assets under Sharia principles. This study aims to systematically review the intersection of technical risk mitigation and Sharia compliance in crypto-asset mechanisms. A Systematic Literature Review (SLR) was conducted following the PRISMA guidelines, analyzing 32 peer-reviewed articles published between 2023 and 2025. The synthesis reveals that technological and operational vulnerabilities in smart contracts induce elements of Gharar or uncertainty and Maysir or speculation, which conflict with the Maqasid al-Shariah objective of Hifzul Mal or protection of wealth. To bridge the gap between cryptographic protocols and Fiqh Muamalah or Islamic commercial law, this review identifies Enterprise Architecture (EA), specifically the TOGAF Architecture Development Method (ADM), as a structural integration framework. EA functions as a governance framework that systematically maps Sharia constraints directly into executable IT control layers. Specifically, the Business Architecture layer enforces contract validity, the Information Systems Architecture layer standardizes auditable data flows, and the Technology Architecture layer secures the consensus mechanics. The findings conclude that future research must transition from conceptual reviews to empirical implementations, particularly by designing Sharia-compliant enterprise architectures for post-Merge Ethereum staking protocols.