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An Arduino-Based Avionics System for Remote-Controlled Aircraft

Eugene Toring, Kimberly Toring, Nonita Legaspi, Alliyah Tagapulotan, Diether John Cabalinan, Vic Matthew Colocar, Karl Raphael DelaCruz, Maynard Fernandez, Ania Leigh Medel, Khudy Ogario, Ramil Remolador, Jhoselle Tus
Journal of Advanced Studies in Aviation, Aerospace, and Management · 2025-05-29 · DOI 10.70838/jasaam.010210
Token #5355
✓ Verified on SciChain. The record below hashes to exactly the content hash stored on chain for token #5355.
Token#5355 of SciMatic Articles (ERC-1155), fixed supply 1,000,000
Contract0x0E596B4bb924937aA35D9b342A90347ed6F05eF8
Mint transaction0xf4cf14871086e847d0c2278bdab209c63a4b1222a02ac2691e7e2fc7ec58ea5c · block 12105518
Minted2026-10-02 05:15 UTC
Hash on chain0x07c2bf4d24a9257989cea105283de75a4beef789fded4eb834103257ca46b223
SHA-256 of the record0x07c2bf4d24a9257989cea105283de75a4beef789fded4eb834103257ca46b223
Article today Matches the anchored record.

Allocation at minting

HolderWalletMintedHolds now
SciMatic (10%) 0xc35709AB…277732 100,000 100,000
Eugene Toring 0x59AFBa9c…f57FBA 75,000 75,000
Kimberly Toring 0xc83A5E05…d1c47C 75,000 75,000
Nonita Legaspi 0x45a17250…c20BD2 75,000 75,000
Alliyah Tagapulotan 0xf74BBc99…0dF71A 75,000 75,000
Diether John Cabalinan 0x69B121e8…971ba1 75,000 75,000
Vic Matthew Colocar 0x39aBAaFF…1622B8 75,000 75,000
Karl Raphael DelaCruz 0x1b234E39…56D73D 75,000 75,000
Maynard Fernandez 0xd83638Ab…7C2439 75,000 75,000
Ania Leigh Medel 0x48d0B2a6…cbce86 75,000 75,000
Khudy Ogario 0x458cc026…04c2Be 75,000 75,000
Ramil Remolador 0x322C02e4…A6C81C 75,000 75,000
Jhoselle Tus 0x3229b82a…39e206 75,000 75,000

The anchored record

Canonical JSON (keys sorted, no spaces, UTF-8). Its SHA-256 is the hash on chain.

{"abstract":"This study aims to design, develop, and evaluate an Arduino-based avionics System for Remote-Controlled Aircraft, providing an affordable and accessible platform for educational and practical aerospace applications. As global aviation continues to evolve, integrating modern avionics into academic environments has become essential for training future professionals. Traditional avionics systems, while effective, are often expensive and complex, limiting their accessibility to students and hobbyists. This research offers a cost-effective alternative by utilizing Arduino Nano as the core processor, combined with essential components such as the MS5611 barometric pressure sensor, MPU6050 gyroscope/accelerometer, Neo-6M GPS module, and APC220 wireless communication module. The study adopts a descriptive quantitative design and was conducted at Indiana Aerospace University (IAU) with 20 participants, including instructors and students experienced in avionics systems. The performance of the Arduino-based system was evaluated in terms of three key metrics: stability, accuracy, and response time. Sensor data and user feedback were gathered through controlled flight tests and face-to-face survey questionnaires using a 5-point Likert scale. Statistical analysis showed that the system performed effectively, achieving high scores across all metrics. The system maintained stable flight under various conditions, produced accurate sensor readings for real-time monitoring, and demonstrated fast response times to control inputs. The results indicate that the Arduino-based avionics system holds substantial potential as a low-cost, customizable alternative for educational and hobbyist use. However, the study also identified areas for refinement, such as enhancing command processing speed and improving stability through advanced flight control algorithms. Overall, this project contributes to developing practical, hands-on learning tools in aviation education, enabling greater access to avionics training and encouraging innovation in aerospace engineering.","abstract_source":"original","authors":["Eugene Toring","Kimberly Toring","Nonita Legaspi","Alliyah Tagapulotan","Diether John Cabalinan","Vic Matthew Colocar","Karl Raphael DelaCruz","Maynard Fernandez","Ania Leigh Medel","Khudy Ogario","Ramil Remolador","Jhoselle Tus"],"date":"2025-05-29","doi":"10.70838/jasaam.010210","id":5355,"issue":2,"journal":{"issn":"3062-4460","name":"Journal of Advanced Studies in Aviation, Aerospace, and Management"},"pdf_sha256":"0e0ac1609f2b48c21d9d68346b130d00e434e355a98d8fd50817bb44e3e4d181","schema":"scimatic-article/1","title":"An Arduino-Based Avionics System for Remote-Controlled Aircraft","volume":1}

Check it yourself

1. The record, from the token's own metadata:

printf '%s' "$(curl -s https://scimatic.org/nft/articles/5355.json | jq -r .canonical_record)" | sha256sum

2. The hash stored on chain (contentHash(5355)):

curl -s https://rpc.scimatic.net -H 'content-type: application/json' \
  -d '{"jsonrpc":"2.0","id":1,"method":"eth_call","params":[{"to":"0x0E596B4bb924937aA35D9b342A90347ed6F05eF8","data":"0xf3e0c29000000000000000000000000000000000000000000000000000000000000014eb"},"latest"]}'

The two must be equal (the second with a 0x in front).