PDF(1349 KB)
Smart-Power Generation Technology of Clean Energy with Water-Light Multi-Energy Complementary
HUANG He, QIN Ling, YU Yangyang, WEI Daowan
Distributed Energy ›› 2020, Vol. 5 ›› Issue (2) : 21-26.
PDF(1349 KB)
PDF(1349 KB)
Smart-Power Generation Technology of Clean Energy with Water-Light Multi-Energy Complementary
Multi-energy complementarity is one of the main features of clean energy development in the future, which is not only conducive to the development of clean energy, but also conducive to energy conservation and emission reduction. In order to improve the intelligent level of water-light multi-energy complementary clean energy projects, Guizhou Xiangbiling Hydropower Station and Xiangbi Ridge Water-Photovoltaic Complementary Agricultural Photovoltaic Power Station are the research objects. we have explored and practiced key technologies such as clean energy construction, water-photovoltaic complementary intelligent power generation dispatching, and unified monitoring of hydro-optical power stations. Technical system for optimal planning and dispatch operation of multi-energy complementary power stations. Engineering examples show that this technology system fully utilizes the complementary characteristics of hydropower stations and photovoltaic power stations, improves engineering efficiency and power quality, and can provide references for the construction of other hydro-optical complementary power stations.
multi-energy complementary / clean energy / smart-power generation
| [1] |
程海花,寇宇,周琳,等. 面向清洁能源消纳的流域型风光水多能互补基地协同优化调度模式与机制[J]. 电力自动化设备,2019, 39(10): 61-70.
|
| [2] |
国家可再生能源中心 国际可再生能源发展报告[M]. 北京:中国经济出版社,2013: 10-40.
|
| [3] |
武俊丽. 发电效益最大化的水光互补方案优化设计研究[J]. 智能城市,2017, 3(10): 154-154.
|
| [4] |
单鹏珠,张柏,李勇,等. 张河湾抽水蓄能电站AVC子站系统设计及应用实现 [J]. 电网与清洁能源,2017, 33(4): 137-142.
|
| [5] |
姜海军. 大中型抽水蓄能电站国产计算机监控系统设计[C]//中国水利学会水力发电专业委员会. 2006年水力发电学术研讨会论文集,2006: 206-209.
|
| [6] |
龚传利. 龙羊峡水光互补自动发电控制策略及应用[C]//中国水力发电工程学会信息化专委会、中国水力发电工程学会水电控制设备专委会. 中国水力发电工程学会信息化专委会2013年年会优秀论文集,2013: 81-82, 132.
|
| [7] |
乐成贵,周杨. 龙羊峡水光互补光伏电站SCADA解决方案[J]. 可编程控制器与工厂自动化,2015(4): 31-33.
|
| [8] |
陈麒宇,张芳,章锐. 风水协同运行控制信息的传输[J]. 发电技术,2018, 39(1): 53-57.
|
| [9] |
区允杰,孙景涛,陈刚. 一种含抽水蓄能电站的可再生能源系统综合优化调度方法[J]. 广东电力,2019, 32(10): 79-88.
|
| [10] |
庞秀岚,张伟. 特约文章:水光互补技术研究及应用[J]. 水力发电学报,2017, 36(7): 1-13.
|
| [11] |
钱梓锋,李庚银,安源,等. 龙羊峡水光互补的日优化调度研究[J]. 电网与清洁能源,2016, 32(4): 69-74.
|
| [12] |
刘娟楠,王守国,王敏. 水光互补系统对龙羊峡水电站综合运用影响分析[J]. 电网与清洁能源,2015, 31(9): 83-87.
|
| [13] |
刘吉臻,王庆华,房方,等. 数据驱动下的智能发电系统应用架构及关键技术[J]. 中国电机工程学报,2019, 39(12): 3578-3587.
|
| [14] |
陶佳,丁腾波,宁康红,等. 智慧能源战略框架及全过程实施方案[J]. 发电技术,2018, 39(2): 129-134.
|
| [15] |
崔青汝,朱子凡. 智能发电运行控制技术[J]. 热力发电,2019, 48(9): 28-33.
|
/
| 〈 |
|
〉 |