Rizk-Allah Rizk M, Hassanien Aboul Ella
Department of Basic Engineering Science, Faculty of Engineering, Menoufia University, Shebin El-Kom 32511, Egypt.
Faculty of Computers and AI, Cairo University, Egypt.
ISA Trans. 2023 Jan;132:402-418. doi: 10.1016/j.isatra.2022.06.014. Epub 2022 Jun 17.
The layout optimization-based model is a significant issue for increasing the utilization rate of the wind farm and minimizing its cost per unit of power. For the accurate and reliable wind farm layout optimization design, a novel algorithm based on the hybridization of equilibrium optimizer (EO) and pattern search (PS) technique, named EO-PS, is proposed in this paper. The proposed EO-PS operates in two phases. The first phase implements the EO to explore the search space and reach the promising regions by using an equilibrium pool of elite particles, which contributes to maintaining the diversity of solutions. The second phase integrates the PS to guide the searching towards better vicinities and achieve a high-quality solution by using its detecting and pattern movements to boost the exploitation ability of the proposed method in the last steps. The presented EO-PS algorithm is implemented to deal with single and multi-objective optimization aspects of wind farm layout optimization using different wind speed scenarios. Furthermore, the proposed algorithm is investigated on irregular land space in the Gulf of Suez-Red Sea in Egypt to achieve the optimal layout configuration of the wind farm, which is vital for possible practical planning trends. The comprehensive results and analyses have affirmed that the proposed EO-PS can achieve competitive performance compared to the other state-of-the-state methods, especially in terms of the solution' quality and reliability.
基于布局优化的模型是提高风电场利用率并使其单位功率成本最小化的一个重要问题。为了进行准确可靠的风电场布局优化设计,本文提出了一种基于均衡优化器(EO)和模式搜索(PS)技术相结合的新算法,即EO-PS算法。所提出的EO-PS算法分两个阶段运行。第一阶段通过使用精英粒子的均衡池来实现EO,以探索搜索空间并到达有希望的区域,这有助于保持解的多样性。第二阶段集成PS,通过利用其检测和模式移动来引导搜索向更好的邻域发展,并在最后步骤中提高所提方法的开发能力,从而获得高质量的解。所提出的EO-PS算法用于处理不同风速场景下风电场布局优化的单目标和多目标优化问题。此外,在埃及苏伊士湾-红海的不规则陆地空间上对所提算法进行了研究,以实现风电场的最优布局配置,这对于可能的实际规划趋势至关重要。综合结果和分析表明,与其他现有方法相比,所提出的EO-PS算法能够实现具有竞争力的性能,特别是在解的质量和可靠性方面。