山东大学学报 (工学版) ›› 2021, Vol. 51 ›› Issue (5): 114-121.doi: 10.6040/j.issn.1672-3961.0.2020.104
Wenling JIANG(),Yanqing ZHAO,Bo WANG,Shuanglei FENG,Yan PEI,Fei ZHANG
摘要:
短期光伏功率预测统计方法一般采用数值天气预报(numerical weather prediction, NWP)的水平辐照度, 而不是倾斜安装的光伏板上接收到的斜面辐照度, 导致预测精度不足。针对这一问题提出新的辐照度斜面转换方法, 先将散射辐射分为属性不同的分子散射、米散射, 再对两者分别进行斜面转换; 采用该方法将NWP水平辐照度转换为NWP斜面辐照度, 再基于NWP斜面辐照度进行光伏功率建模与预测。算例结果显示, 本方法的预测精度(均方根误差为10.25%、相关性系数为0.914 0)高于直接采用NWP水平辐照度的传统方法。
中图分类号:
1 | 李忠东. 全球光伏市场稳步增长[J]. 太阳能, 2019, 300 (4): 76- 78. |
2 | 卢静, 翟海青, 刘纯, 等. 光伏发电功率预测统计方法研究[J]. 华东电力, 2010, 38 (4): 563- 567. |
LU Jing , ZHAI Haiqing , LIU Chun , et al. Study on statistical method for predicting photovoltaic generation power[J]. East China Electric Power, 2010, 38 (4): 563- 567. | |
3 | 卢静, 翟海清, 冯双磊, 等. 光伏发电功率预测方法的探索[J]. 华东电力, 2013, 41 (2): 380- 384. |
LU Jing , ZHAI Haiqing , FENG Shuanglei , et al. Physical method for photovoltaic power prediction[J]. East China Electric Power, 2013, 41 (2): 380- 384. | |
4 | 龚莺飞, 鲁宗相, 乔颖, 等. 光伏功率预测技术[J]. 电力系统自动化, 2016, 40 (4): 140- 151. |
GONG Yingfei , LU Zongxiang , QIAO Ying , et al. An overview of photovoltaic energy system output forecasting technology[J]. Automation of Electric Power Systems, 2016, 40 (4): 140- 151. | |
5 |
魏嫽嫽, 崔承刚, 杨宁, 等. 光伏发电功率预测斜面辐射组合模型的评估研究[J]. 可再生能源, 2018, 36 (6): 842- 849.
doi: 10.3969/j.issn.1671-5292.2018.06.008 |
WEI Liaoliao , CUI Chenggang , YANG Ning , et al. Evaluation study on combination models of solar irradiance on inclined surfaces in the PV power forecasting[J]. Renewable Energy Resources, 2018, 36 (6): 842- 849.
doi: 10.3969/j.issn.1671-5292.2018.06.008 |
|
6 | 丁毛毛, 杨仁刚. 基于天气预报的光伏输出功率短期预测[J]. 可再生能源, 2014, 32 (4): 385- 391. |
DING Maomao , YANG Rengang . Research on short-term prediction of PV output power based on weather forecast[J]. Renewable Energy Resources, 2014, 32 (4): 385- 391. | |
7 |
ERBS D G , KLEIN S A , DUFFIE J A . Estimation of the diffuse radiation fraction for hourly, daily and monthly-average global radiation[J]. Solar Energy, 1982, 28 (4): 293- 302.
doi: 10.1016/0038-092X(82)90302-4 |
8 | PEREZ R R , INEICHEN P , MAXWELL E L , et al. Dynamic global-to-direct irradiance conversion models[J]. Ashrae Transactions, 1992, 98 (1): 354- 369. |
9 |
REINDL D T , BECKMAN W A , DUFFIE J A . Diffuse fraction correlations[J]. Solar Energy, 1990, 45 (1): 1- 7.
doi: 10.1016/0038-092X(90)90060-P |
10 |
LIU B Y H , JORDAN R C . The interrelationship and characteristic distribution of direct, diffuse and total solar radiation[J]. Solar Energy, 1960, 4 (3): 1- 19.
doi: 10.1016/0038-092X(60)90062-1 |
11 |
HAY J E . Calculation of monthly mean solar radiation for horizontal and inclined surfaces[J]. Solar Energy, 1979, 23 (4): 301- 307.
doi: 10.1016/0038-092X(79)90123-3 |
12 |
REINDL D T , BECKMAN W A , DUFFIE J A . Evaluation of hourly tilted surface radiation models[J]. Solar Energy, 1990, 45 (1): 9- 17.
doi: 10.1016/0038-092X(90)90061-G |
13 | 盛裴轩, 毛节泰, 李建国, 等. 大气物理学[M]. 北京: 北京大学出版社, 2003: 84- 101. |
14 |
何洪林, 于贵瑞, 牛栋. 复杂地形条件下的太阳资源辐射计算方法研究[J]. 资源科学, 2003, 25 (1): 78- 85.
doi: 10.3321/j.issn:1007-7588.2003.01.013 |
HE Honglin , YU Guirui , NIU Dong . Method of global solar radiation calculation on complex territories[J]. Resources Science, 2003, 25 (1): 78- 85.
doi: 10.3321/j.issn:1007-7588.2003.01.013 |
|
15 | SHAO Yanbo , ZHANG Jun , GUO Peng , et al. Impact of solar radiation variation on the optimal titled angle for fixed grid-connected PV array case—study in Beijing[J]. Global Energy Interconnection, 2018, 1 (4): 460- 466. |
16 | 李净, 罗晶. 晴空下山区太阳辐射模拟[J]. 干旱区地理, 2015, 38 (1): 120- 127. |
LI Jing , LUO Jing . Estimation of solar radiation over rugged terrains based on clear sky condition[J]. Arid Land Geography, 2015, 38 (1): 120- 127. |
[1] | 宋士瞻,王传勇,康文文,张健,闫红华,李鹏. 考虑多重出力不确定性的风光装机容量优化[J]. 山东大学学报 (工学版), 2018, 48(6): 101-108. |
[2] | 宋士瞻,王传勇,康文文,张健,闫红华,李鹏. 基于时序生产模拟的配电网光伏装机容量规划[J]. 山东大学学报 (工学版), 2018, 48(5): 131-136. |
[3] | 丛旖旎,曹增功,牟宏,王春义,刘玉田. 百万千瓦级滩涂光伏电站接入电网分析[J]. 山东大学学报(工学版), 2017, 47(6): 77-82. |
[4] | 尹晓敏,孟祥剑,侯昆明,陈亚潇,高峰. 一种计及空间相关性的光伏电站历史出力数据的修正方法[J]. 山东大学学报 (工学版), 2021, 51(4): 118-123. |
[5] | 李志,余绍峰,苏毅方,王蔚,蒋宏图,张伟. 基于RTDS的配电网一二次融合仿真技术[J]. 山东大学学报 (工学版), 2020, 50(6): 112-117. |
|