配电网中风力发电的尾流效应分析

A. Routray, K. Mistry, S. Arya
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引用次数: 5

摘要

本文分析了配电系统中最常用的减损DG技术,对提高配电系统的功率效率和电能质量有一定的贡献。考虑风力发电作为DG,并采用标准IEEE 28总线径向配电系统对其小时性能进行了分析。提出了一种新的负荷阻抗矩阵(LIM)方法。利用核密度估计(KDE)和蒙特卡罗模拟(MCS)对6小时间隔内风速分布的不确定性进行了分析。设计了一种风力发电场,其风力涡轮机具有一定的不规则排列。由于上游风力机引起的风流扰动,导致风电场下游风力机产生尾流效应。尾流效应降低了有效风速,从而降低了风力发电。尾流产生的风速取决于涡轮机之间的距离。本文讨论了在不同水平距离下尾迹对自由风速的影响。采用了一种新的风电场布局,使尾流效应最小化,并在最小风电场面积下获得最佳的输出功率。计算逐时风力发电量时还考虑了逐时空气密度效应。采用灰狼优化(GWO)技术确定风力发电DG的规模和位置。这使测试配电网络中的线路损耗最小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Wake Effect on Wind Power Generation for Loss Minimization in Distribution System
This paper presents an analysis of most commonly used DG technology for the loss minimization with a contribution towards improving the power efficiency and power quality of distribution system. Wind power as DG is considered and the hourly performance has been analyzed using a standard IEEE 28 bus radial distribution system. A new Load Impedance Matrix (LIM) method is implemented for load flow study. Uncertainty in wind speed distribution is generated on a six-hour gap using Kernel Density Estimation (KDE) and Monte Carlo Simulation (MCS). A wind farm is designed with the certain irregular arrangement of wind turbines. The downstream wind turbines in the wind farm experiences wake effect due to the disturbed wind flow caused by upstream wind turbines. Wake effect reduces the effective wind speed and hence the power generation from the wind. The wake generated wind speed depends on the distance between the turbines. The effect of wake on free wind speed for several horizontally varying distances is presented in this paper. A new wind farm layout is availed to minimize the wake effect as well as the optimized power output extraction from minimum wind farmland area. The hourly air density effect is also considered for the calculation of hourly wind power generation. The wind powered DG sizing and location are determined by Grey Wolf Optimization (GWO) technique. This gives the most minimum line losses in the test distribution network.
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