S Tao, Q Xu, A Feijóo, G Zheng, J Zhou - Energy, 2020 - Elsevier
This paper presents a review on wind farm (WF) layout optimization with multiple types of wind turbines (WTs). Compared with uniform WF layout optimization, the three key research …
H Ma, M Ge, G Wu, B Du, Y Liu - Applied Energy, 2021 - Elsevier
Cooperative yaw control of wind turbines can substantially increase the total power production of wind farms, especially for the ones with aligned turbines. However, a …
The rotor area of a wind turbine must be perfectly perpendicular to the wind to deliver the most efficient performance as a single unit (ie, yaw angle γ= 0°). When the rotor is …
A new multi-objective method called Multi-Objective Electric Charged Particles Optimization (MOECPO) is proposed to optimally place wind turbines and at the same time select their …
This study investigates the wind farm layout optimization problem utilizing realistic wind speed and wind direction data with 10 min time interval instead of using hypothetical wind …
The importance of the nurse rostering problem in complex healthcare environments should not be understated. The nurses in a hospital should be assigned to the most appropriate …
X Yu, W Zhang - Applied Soft Computing, 2024 - Elsevier
As the global demand for renewable energy continues to rise, wind energy has received widespread attention as an eco-friendly energy source. Wind power generation is regarded …
Y Wu, S Zhang, R Wang, Y Wang, X Feng - Renewable Energy, 2020 - Elsevier
Wind farm designing is a crucial stage to realize the application of wind energy. This work studies the problem of wind farm layout optimization (WFLO). A new method based on …
XY Tang, Q Yang, B Stoevesandt, Y Sun - Computers & Industrial …, 2022 - Elsevier
Traditional methods for micro-siting of wind farms usually assume that each turbine is controlled to obtain its individual maximum power generation. However, it is now common …