An artificial neural networks approach and hybrid method with wavelet transform to investigate the quality of Tallo River, Indonesia

Publish Year: 1402
نوع سند: مقاله ژورنالی
زبان: English
View: 247

This Paper With 10 Page And PDF Format Ready To Download

  • Certificate
  • من نویسنده این مقاله هستم

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این Paper:

شناسه ملی سند علمی:

JR_CJES-21-3_016

تاریخ نمایه سازی: 31 خرداد 1403

Abstract:

Water contamination has always been one of the greatest intense environmental issues. Rivers are more polluted than the other surface and underground water resources, since passing through different areas. The current study aimed to examine the exactitude of artificial neural networks (ANN) and wavelet-ANN (WANN) models in estimating the concentrations of pollutants including Cl, EC, Mg, and TDS by comparing the results of the observed data. Tallo River in Indonesia was selected as the case study. The concentrations of pollutant parameters Cl, EC, Mg, and TDS were available and used between ۲۰۱۰ and ۲۰۲۲. Then ۷۰% (۱۰۰ months) of the data were considered as training data, while ۳۰% (۴۴ months) were supposed to be the testing ones. ANN and WANN models were examined to evaluate and predict the concentrations of pollutants in river water. The results of each model were compared to the observed data, and the models' accuracy was assessed. The results demonstrated that applying wavelet transform improved the precision of simulation. All efficiency criteria associated with the WANN model yielded superior results compared to the ANN model. The findings indicated that using the hybrid method with wavelet transformation ameliorated the ANN model's exactitude by ۱۰% during training and ۱۶% during testing. Finally, the findings exhibited that the WANN method is better than ANN; consequently, the former has performed more exactitude modeling in the estimation of water quality.

Authors

Dahlan Abdullah

Department of Information Technology, University of Malikussaleh, Aceh, Indonesia

Kristina Gartsiyanova

National Institute of Geophysics, Geodesy and Geography, Hydrology and Water Management Research Center, Bulgarian Academy of Sciences (NIGGG-BAS), Sofia, Bulgaria, Acad. G. Bonchev Str., bl. ۳, Sofia ۱۱۱۳, Bulgaria

Khurramova (Eshmamatova) Madina Mansur qizi

Faculty of Finance and Accounting, Department of "Financial Analysis and Audit" Tashkent State University of Economics, Tashkent, Uzbekistan, Islom Karimov ۴۹, Tashkent ۱۰۰۰۶۶

Eshkobilov Akhmad Javlievich

Assistant of Termez Institute of Agrotechnologies and Innovative Development, Termez, Uzbekistan. Yangiabad mahalla, Termez district, Surkhandarya region, ۱۹۱۲۰۰, Uzbekistan

Mullabayev Baxtiyarjon Bulturbayevich

Department of Economics, Namangan Engineering-Construction Institute, Namangan, Republic of Uzbekistan

Gavxar Zokirova

Department of Finance, Termez State University, Uzbekistan

Mohd Norazmi Nordin

Centre of Research for Education and Community Wellbeing, Faculty of Education, Universiti Kebangsaan Malaysia, Bangi, Selangor, Malaysia

مراجع و منابع این Paper:

لیست زیر مراجع و منابع استفاده شده در این Paper را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود Paper لینک شده اند :
  • Abad, SSAMK, Javidan, P, Baghdadi, M & Mehrdadi, N ۲۰۲۳, ...
  • Ahmadianfar, I, Jamei, M & Chu, X ۲۰۲۰, A novel ...
  • Aliasghar, A, Javidan, P, Rahmaninezhad, SA & Mehrdadi, N ۲۰۲۲, ...
  • Alizadeh, MJ & Kavianpour, MR ۲۰۱۵, Development of wavelet-ANN models ...
  • Banejad, H, Kamali, M, Amirmoradi, K & Olyaie, E ۲۰۱۳, ...
  • Brontowiyono, W, Hammid, AT, Jebur, YM, Al Sudani, AQ, Mutlak, ...
  • Chen, TC ۲۰۲۳, Application of wavelet theory to enhance the ...
  • Fallah, M, Pirali Zefrehei, AR, Hedayati, SA & Bagheri, T ...
  • Farabi, SMV, Golaghaei, M, Sharifian, M, Karimian, E & Daryanabard, ...
  • Heddam, S, Yaseen, ZM, Falah, MW, Goliatt, L, Tan, ML, ...
  • Heidari, AR, Mortazavi, S & Hasanzadeh, N ۲۰۲۲, Spatiotemporal variation ...
  • Huang, M, Tian, D, Liu, H, Zhang, C, Yi, X, ...
  • Javidan, P, Baghdadi, M, Torabian, A & Goharrizi, BA ۲۰۲۲, ...
  • Jeihouni, E, Eslamian, S, Mohammadi, M & Zareian, MJ ۲۰۱۹, ...
  • Ji, X & Lu, J ۲۰۱۸, Forecasting riverine total nitrogen ...
  • Khosravi, M, Afshar, A & Molajou, A ۲۰۲۲, Decision tree-based ...
  • Kumar, M, Kumar, P, Kumar, A, Elbeltagi, A & Kuriqi, ...
  • Molajou, A, Nourani, V, Afshar, A, Khosravi, M & Brysiewicz, ...
  • Montaseri, M, Zaman Zad Ghavidel, S & Sanikhani, H ۲۰۱۸, ...
  • Moore, CC, Corona, J, Griffiths, C, Heberling, MT, Hewitt, JA, ...
  • Nagaraju, TV, Sunil, BM, Chaudhary, B, Prasad, CD & Gobinath, ...
  • Nejatian, N, Yavary Nia, M, Yousefyani, H, Shacheri, F & ...
  • Parween, S, Siddique, NA, Diganta, MTM, Olbert, AI & Uddin, ...
  • Rajaee, T & Shahabi, A ۲۰۱۶, Evaluation of wavelet-GEP and ...
  • Saalidong, BM, Aram, SA, Otu, S & Lartey, PO ۲۰۲۲, ...
  • Shi, B, Wang, P, Jiang, J, & Liu, R ۲۰۱۸, ...
  • Uddin, MG, Nash, S, Rahman, A & Olbert, AI ۲۰۲۲, ...
  • Wang, Y, Zheng, T, Zhao, Y, Jiang, J, Wang, Y, ...
  • Wu, J & Wang, Z ۲۰۲۲, A hybrid model for ...
  • Yavari, F, Salehi Neyshabouri, SA, Yazdi, J, Molajou, A & ...
  • Zhang, J, Qiu, H, Li, X, Niu, J, Nevers, MB, ...
  • Zhou, S, Song, C, Zhang, J, Chang, W, Hou, W ...
  • Zhu, M, Wang, J, Yang, X, Zhang, Y, Zhang, L, ...
  • Zubaidi, SL, Al Bugharbee, H, Ortega Martorell, S, Gharghan, SK, ...
  • نمایش کامل مراجع