Abstract

To sustain a clean environment by reducing fossil fuels-based energies and increasing the integration of renewable-based energy sources, i.e., wind and solar power, have become the national policy for many countries. The increasing demand for renewable energy sources, such as wind, has created interest in the economic and technical issues related to the integration into the power grids. Having an intermittent nature and wind generation forecasting is a crucial aspect of ensuring the optimum grid control and design in power plants. Accurate forecasting provides essential information to empower grid operators and system designers in generating an optimal wind power plant, and to balance the power supply and demand. In this paper, we present an extensive review of wind forecasting methods and the artificial neural network (ANN) prolific in this regard. The instrument used to measure wind assimilation is analyzed and discussed, accurately, in studies that were published from May 1st, 2014 to May 1st, 2018. The results of the review demonstrate the increased application of ANN into wind power generation forecasting. Considering the component limitation of other systems, the trend of deploying the ANN and its hybrid systems are more attractive than other individual methods. The review further revealed that high forecasting accuracy could be achieved through proper handling and calibration of the wind-forecasting instrument and method.

Highlights

  • The advancement of civilizations, and their capability to withstand bulk populations, are similar challenges to changes in the volume and nature of energy available to meet the demand for nourishment, quality of life and to complete tasks [1,2,3]

  • It is necessary to mention that the aim of this review study is not to develop any kind of model that competes with commercial models with precise wind forecasting

  • artificial neural network (ANN)-based are used wind model design, system fault diagnosis controland methods, where forecasting methods are in used in wind model design, system faultand diagnosis controletc., methods, etc., where is more-essential and shares

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Summary

Introduction

The advancement of civilizations, and their capability to withstand bulk populations, are similar challenges to changes in the volume and nature of energy available to meet the demand for nourishment, quality of life and to complete tasks [1,2,3]. 2020, 12, 3778 of challenges challenges to to changes changes in in the the volume volume and and nature nature of of energy energy available available to to meet meet the the demand demand for for nourishment, quality of life and to complete tasks [1,2,3]. Lower access to energy is an undesirable nourishment, quality of life and to complete tasks [1,2,3]. Lower access to energy is an undesirable and theof probable cause of probable inferior and a human’s quality life. Fundamental to providing sufficient services such as food, primary healthcare, water, education, energy energy is is fundamental fundamental to to providing providing sufficient sufficient services services such such as as food, food, primary primary healthcare, healthcare, communication, and reasonable employment.

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