Predicting the carbon dioxide emission caused by road transport using a Random Forest (RF) model combined by Meta-Heuristic Algorithms
Author:
Publisher
Elsevier BV
Subject
Transportation,Renewable Energy, Sustainability and the Environment,Civil and Structural Engineering,Geography, Planning and Development
Reference58 articles.
1. Load balancing of IoT tasks in the cloud computing by using sparrow search algorithm;Abdulhammed;The Journal of Supercomputing,2022
2. A particle swarm optimisation-trained feedforward neural network for predicting the maximum power point of a photovoltaic array;Al-Majidi;Engineering Applications of Artificial Intelligence,2020
3. Estimation of greenhouse gas emissions produced by road projects in Abu Dhabi, United Arab Emirates;Alzard;Sustainability,2019
4. Multi-aspect analysis and RSM-based optimization of a novel dual-source electricity and cooling cogeneration system;Azizi;Applied Energy,2023
5. A robust multiobjective Harris' Hawks Optimization algorithm for the binary classification problem[Formula presented];Dokeroglu;Knowledge-Based Systems,2021
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