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基于连续小波变换的风光发电资源多尺度评估
引用本文:王飞,宋士瞻,曹永吉,谢红涛,张新华,张健,肖天,赵雅文.基于连续小波变换的风光发电资源多尺度评估[J].山东大学学报(工学版),2018,48(5):124-130.
作者姓名:王飞  宋士瞻  曹永吉  谢红涛  张新华  张健  肖天  赵雅文
作者单位:1. 国网山东省电力公司, 山东 济南 2500012. 国网山东省电力公司枣庄供电公司, 山东 枣庄 2771003. 电网智能化调度与控制教育部重点实验室(山东大学), 山东 济南 250061
基金项目:国网山东省电力公司科技资助项目(2017A18)
摘    要:针对区域风光发电资源评估问题,提出一种基于连续小波变换的多尺度评估方法。从美国国家航空航天局(National Aeronautics and Space Administration, NASA)中获取风速和光照强度再分析数据,并利用虚拟发电系统模型预处理为发电容量系数。综合考虑储量、波动性和互补性等资源属性,构建量化指标对区域风光发电资源进行分析,以时间和空间两个角度挖掘区域资源的分布特征。利用连续小波变换方法提取不同尺度上的风光波动性和互补性特征,评估风光互补发电对出力波动的平抑作用,并探究最佳的互补尺度。以枣庄市为例,对提出方法的有效性进行验证。算例分析表明:风光资源具有波动性和互补性,在最佳尺度上规划互补发电系统能够有效平抑功率波动。

关 键 词:风光发电  资源评估  NASA  时空分布  波动性  互补性  连续小波变换  
收稿时间:2018-05-04

Multi-scale assessment of wind-solar generation resources based on continuous wavelet transform
Fei WANG,Shizhan SONG,Yongji CAO,Hongtao XIE,Xinhua ZHANG,Jian ZHANG,Tian XIAO,Yawen ZHAO.Multi-scale assessment of wind-solar generation resources based on continuous wavelet transform[J].Journal of Shandong University of Technology,2018,48(5):124-130.
Authors:Fei WANG  Shizhan SONG  Yongji CAO  Hongtao XIE  Xinhua ZHANG  Jian ZHANG  Tian XIAO  Yawen ZHAO
Affiliation:1. State Grid Shandong Electric Power Company, Jinan 250001, Shandong, China2. Zaozhuang Power Supply Company, State Grid Shandong Electric Power Company, Zaozhuang 277100, Shandong, China3. Key Laboratory of Power System Intelligent Dispatch and Control of Ministry of Education (Shandong University), Jinan 250061, Shandong, China
Abstract:Taken into account the assessment of areal wind and solar generation resources, a multi-scale assessment approach using the continuous wavelet transform was proposed. Based on the National Aeronautics and Space Administration (NASA), the wind speed and solar irradiation data were obtained and then preprocessed into capacity factors via virtual generation systems. From the viewpoint of time and space, the quantitative indices of energy potential, variability and complementarity were established to capture the attributes of areal wind and solar resources. The multi-scale variabilities and complementarities were extracted by the continuous wavelet transform to analyze the damping effect on output power and estimate the optimal scale. Zaozhuang City was taken as a case study to validate the effectiveness of proposed approach, of which the results indicated that there were inherent variability and complementary characteristics of wind and solar resources and the reasonable planning of hybrid generation systems in optimal scale could damp the power fluctuation.
Keywords:wind and solar generation  resource assessment  NASA  space-time distribution  variability  complementarity  continuous wavelet transform  
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