A New Approach to the Quality Determination of Used Palm Cooking Oil using Supervised Learning based on Electronic Sensors
Received: 4 September 2024 | Revised: 10 October 2024 | Accepted: 14 October 2024 | Online: 2 December 2024
Corresponding author: Lilik Anifah
Abstract
As discarding used palm oil in nature is very dangerous, a processing mechanism is needed to utilize it according to needs. This utilization depends on the palm oil used, so the sorting process becomes important. This study proposes a new classification approach for the quality of used palm oil using Self-Organizing Map (SOM), Linear Vector Quantization (LVQ), and K-means, based on electronic sensors. This study included hardware design, software development, data collection, and training and testing processes. Based on the experimental results, the proposed system performed well using 13 parameters consisting of e-nose data, color, viscosity, and turbidity. The accuracy of SOM was 91.11%, LVQ achieved 95.56%, and K-Means obtained an accuracy of 98.89%. This system can be used as a decision support system in the automatic recognition of used palm oil to classify its quality.
Keywords:
used oil, palm, SOM, LVQ, k-meansDownloads
References
F. F. de Albuquerque Landi, C. Fabiani, B. Castellani, F. Cotana, and A. L. Pisello, "Environmental assessment of four waste cooking oil valorization pathways," Waste Management, vol. 138, pp. 219–233, Feb. 2022.
F. Panghegar, T. Kristiastomo, T. Radhianshah, and P. Widyarini, "Identification of Potential Availability and Collection Models of Used Cooking Oil from Households and Micro Enterprises for Biodiesel Raw Material: Study of Five Cities on the Islands of Java and Bali," Yayasan Transformasi Energi Asia, Jakarta, Indonesia, 2022.
W. H. Foo et al., "Recent advances in the conversion of waste cooking oil into value-added products: A review," Fuel, vol. 324, Sep. 2022, Art. no. 124539.
O. Awogbemi, D. V. V. Kallon, V. S. Aigbodion, and S. Panda, "Advances in biotechnological applications of waste cooking oil," Case Studies in Chemical and Environmental Engineering, vol. 4, Dec. 2021, Art. no. 100158.
N. A. Hamdi, S. Sha’arani, N. F. Azman, S. B. M. Rafi, E. Norsin, and N. Othman, "Management of Waste Cooking Oil and its Potential for Value-added Materials: A Mini Review," IOP Conference Series: Earth and Environmental Science, vol. 1091, no. 1, Aug. 2022, Art. no. 012054.
Z. Rani, J. Reveny, and U. Harahap, "Utilization of Glycerol by Product From Transesterification of Waste Cooking Oil as A Cosurfactant in Nanocream Preparation," International Journal of Science, Technology & Management, vol. 2, no. 4, pp. 1258–1264, Jul. 2021.
M. U. H. Suzihaque, H. Alwi, U. Kalthum Ibrahim, S. Abdullah, and N. Haron, "Biodiesel production from waste cooking oil: A brief review," Materials Today: Proceedings, vol. 63, pp. S490–S495, 2022.
A. Al-Saadi, B. Mathan, and Y. He, "Biodiesel production via simultaneous transesterification and esterification reactions over SrO–ZnO/Al2O3 as a bifunctional catalyst using high acidic waste cooking oil," Chemical Engineering Research and Design, vol. 162, pp. 238–248, Oct. 2020.
M. Farooq, A. Ramli, and A. Naeem, "Biodiesel production from low FFA waste cooking oil using heterogeneous catalyst derived from chicken bones," Renewable Energy, vol. 76, pp. 362–368, Apr. 2015.
X. Meng, G. Chen, and Y. Wang, "Biodiesel production from waste cooking oil via alkali catalyst and its engine test," Fuel Processing Technology, vol. 89, no. 9, pp. 851–857, Sep. 2008.
W. M. Kedir, K. T. Wondimu, and G. S. Weldegrum, "Optimization and characterization of biodiesel from waste cooking oil using modified CaO catalyst derived from snail shell," Heliyon, vol. 9, no. 5, May 2023.
S. A. Ratiu, G. O. Tirian, N. L. Mihon, and M. D. Armioni, "Overview on globally applied used engine oil recycling technologies," IOP Conference Series: Materials Science and Engineering, vol. 1220, no. 1, Jan. 2022, Art. no. 012034.
A. D. Wilson, "Review of Electronic-nose Technologies and Algorithms to Detect Hazardous Chemicals in the Environment," Procedia Technology, vol. 1, pp. 453–463, Jan. 2012.
M. Mohd Ali, N. Hashim, S. Abd Aziz, and O. Lasekan, "Principles and recent advances in electronic nose for quality inspection of agricultural and food products," Trends in Food Science & Technology, vol. 99, pp. 1–10, May 2020.
P. Arroyo, F. Meléndez, J. I. Suárez, J. L. Herrero, S. Rodríguez, and J. Lozano, "Electronic Nose with Digital Gas Sensors Connected via Bluetooth to a Smartphone for Air Quality Measurements," Sensors, vol. 20, no. 3, Jan. 2020, Art. no. 786.
A. Fatoni, A. N. Aziz, and M. D. Anggraeni, "Low-cost and real-time color detector developments for glucose biosensor," Sensing and Bio-Sensing Research, vol. 28, Jun. 2020, Art. no. 100325.
G. de Carvalho Oliveira, C. C. S. Machado, D. K. Inácio, J. F. da Silveira Petruci, and S. G. Silva, "RGB color sensor for colorimetric determinations: Evaluation and quantitative analysis of colored liquid samples," Talanta, vol. 241, May 2022, Art. no. 123244.
N. Othman, M. Z. Md. Zain, I. Shah Ishak, A. R. Abu Bakar, M. Ab Wahid, and M. Mohamad, "A colour recognition device for the visually disabled people," Indonesian Journal of Electrical Engineering and Computer Science, vol. 17, no. 3, pp. 1322-1329, Mar. 2020.
E. E. Franco and F. Buiochi, "Ultrasonic measurement of viscosity: Signal processing methodologies," Ultrasonics, vol. 91, pp. 213–219, Jan. 2019.
M. A. N. Reza, E. A. Z. Hamidi, R. Herawati, and E. Mulyana, "Research Development and Landscape Artificial Intelligence in Indonesia," in 2020 6th International Conference on Wireless and Telematics (ICWT), Yogyakarta, Indonesia, Sep. 2020, pp. 1–5.
M. Dolata and K. Crowston, "Making Sense of AI Systems Development," IEEE Transactions on Software Engineering, vol. 50, no. 1, pp. 123–140, Jan. 2024.
M. A. Nortje and S. S. Grobbelaar, "A Framework for the Implementation of Artificial Intelligence in Business Enterprises: A Readiness Model," in 2020 IEEE International Conference on Engineering, Technology and Innovation (ICE/ITMC), Cardiff, UK, Jun. 2020, pp. 1–10.
J. Bai, Y. Yin, J. Liu, Y. Qin, and Y. Cui, "Design and Implementation of Artificial Intelligence Platform Dedicated to Power System," in 2021 7th International Conference on Systems and Informatics (ICSAI), Chongqing, China, Nov. 2021, pp. 1–6.
L. Anifah, M. Syariffuddien Zuhrie, Muhammad, and Haryanto, "A novel pencak silat punch pattern recognition approach using supervised learning," Ain Shams Engineering Journal, vol. 15, no. 8, Aug. 2024, Art. no. 102857.
Sutarno and S. Putri Fauliah, "Implementation of Learning Vector Quantization (LVQ) Algorithm for Durian Fruit Classification Using Gray Level Co-occurrence Matrix (GLCM) Parameters," Journal of Physics: Conference Series, vol. 1196, Mar. 2019, Art. no. 012040.
D. Siburian, S. R. Andani, and I. P. Sari, "Implementation of K-Means Algorithm for Clustering Books Borrowing in School Libraries," JOMLAI: Journal of Machine Learning and Artificial Intelligence, vol. 1, no. 2, pp. 115–124, Jul. 2022.
B. A. Binson, M. Subramoniam, and L. Mathew, "Detection of COPD and Lung Cancer with electronic nose using ensemble learning methods," Clinica Chimica Acta, vol. 523, pp. 231–238, Dec. 2021.
J. T. Sese et al., "Effects of different adsorbent on methane reduction on a garbage bin using MQ4 Gas Sensor," in 2016 6th IEEE International Conference on Control System, Computing and Engineering (ICCSCE), Penang, Malaysia, 2016, pp. 455–459.
H. Yang, Y. Luo, G. Lu, Y. Chai, Z. Chu, and K. H. Li, "Viscosity Sensors Based on III-Nitride Optical Devices Integrated With Droplet Sliding Channels," IEEE Electron Device Letters, vol. 43, no. 12, pp. 2169–2172, Sep. 2022.
T. Kohonen, "The self-organizing map," Proceedings of the IEEE, vol. 78, no. 9, pp. 1464–1480, Sep. 1990.
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Copyright (c) 2024 Lilik Anifah, Prima Retno Wikandari, Puput Wanarti Rusimamto, Haryanto, Parama Diptya Widayaka
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