PDF(4093 KB)
PDF(4093 KB)
PDF(4093 KB)
海上风电场智慧型监控管理一体化系统
Intelligent Integrated Monitoring and Management System for Offshore Wind Farm
主辅设施的全面一体化监控管理是海上风电场运检高效的有力措施。首先分析了目前在运的海上风电场监控系统的现状及提升对策;其次提出了以全场信息数字化、信息共享标准化、系统功能一体化、主辅设备智能化、高级应用互动化、运行状态可视化、运维管理智慧化为特征的海上风电场智慧型一体化监控管理系统的设计思想;最后研究分析了系统的体系架构和技术特征。研究成果为海上风电场的智慧化建设指明了方向。
Comprehensive integrated monitoring and management of the main and auxiliary facilities is an effective measure for the efficient operation and inspection of the offshore wind farms. The present situation of offshore wind farm monitoring system in operation and its promotion countermeasures were analyzed. The design idea of intelligent integrated monitoring and management system of offshore wind farm was put forward, which is characterized by full field information digitization, information sharing standardization, system function integration, intelligent main and auxiliary equipment, advanced application interaction, operation state visualization and operation and maintenance management wisdom. The system architecture and technical features were analyzed. We look forward to point out the direction for the wisdom construction of offshore wind farms.
海上风电场 / 智慧型 / 一体化 / 监控管理系统 / IEC 61850
offshore wind farm / intelligent / integration / monitoring and management system / IEC 61850
| [1] |
黄碧斌,张运洲,王彩霞. 中国“十四五”新能源发展研判及需要关注的问题[J]. 中国电力,2020, 53(1): 1-9.
|
| [2] |
时智勇,王彩霞,李琼慧. “十四五”中国海上风电发展关键问题[J]. 中国电力,2020, 53(7): 8-17.
|
| [3] |
徐政. 柔性直流输电系统[M]. 北京:机械工业出版社,2017.
|
| [4] |
迟永宁,梁伟,张占奎,等. 大规模海上风电输电与并网关键技术研究综述[J]. 中国电机工程学报,2016, 36(14): 3758-3771.
|
| [5] |
任杰. 大型风电机组运行状态评价与分析[D]. 北京:华北电力大学,2014: 1-2.
|
| [6] |
国家电网公司. 智能变电站一体化监控系统建设技术规范:Q/GDW 679—2011[S]. 北京:中国电力出版社,2011.
State Grid Corporation. Technical specifications for construction of integrated supervision and control system of smart substation: Q/GDW 679—2011[S]. Beijing: China Electric Power Press, 2011.
|
| [7] |
国家电网公司. 智能变电站辅助控制系统设计技术规范:Q/GDW 688-2012[S]. 北京:中国电力出版社,2012.
State Grid Corporation. Technical specification for design of intelligent substation auxiliary control system: Q/GDW 688-2012[S]. Beijing: China Electric Power Press, 2012.
|
| [8] |
闫培丽,袁兆祥. 海上风电场二次系统设计关键技术[J]. 电力建设,2015, 36(4): 129-133.
|
| [9] |
严玉峰. 海上风电场电气二次设计原则和要点[J]. 电气时代,2020(4): 22-26.
|
| [10] |
冯宝平,曹立海,王璨. 探索风电场信息化、数字化、智能化建设之路[J]. 风力发电,2017(4): 5-8.
|
| [11] |
夏云峰. 智慧运营2.0模式下,风电场无人值守时代正在到来[J]. 风能,2017(8): 32-34.
|
| [12] |
国家电网公司. 海上风电场接入电网技术规定:Q/GDW 11410—2015 [S]. 北京:中国电力出版社,2015.
State Grid Corporation of China. Technical rule for connecting offshore wind farm into power grid: Q/GDW 11410—2015[S]. Beijing: China Electric Power Press, 2015.
|
| [13] |
中华人民共和国住房和城乡建设部. 海上风力发电场设计规范:GB/T 51308—2019[S]. 北京:中国标准出版社,2019.
Ministry of Housing and Urban-Rural Development of the People's Republic of China. Design specification for offshore wind farms: GB/T 51308—2019[S]. Beijing: China Standard Press, 2019.
|
| [14] |
傅质馨,袁越. 海上风电机组状态监控技术研究现状与展望[J]. 电力系统自动化,2012, 36(21): 121-129.
|
| [15] |
周冰. 海上风电机组智能故障预警系统研究[J]. 南方能源建设,2018, 5(2): 133-137.
|
| [16] |
张峰. 海上风电场升压站无人值守关键技术应用研究[J]. 河南科技,2020, 39(31): 17-20.
|
| [17] |
鲁浩袁,郑帅. 基于多智能终端的海上风电升压站巡检方案设计[J]. 山东电力技术,2020, 47(10): 22-26.
|
| [18] |
汤东升. 海上风电大数据分析技术及应用前景初探[J]. 南方能源建设,2018, 5(2): 65-66.
|
| [19] |
张志宏,施永吉,黄建平. 深远海域风电场智慧运维管理系统的探索与研究[J]. 太阳能,2018, 6: 49-53.
|
| [20] |
杜杰,刘碧燕. 海上风电场智慧调度平台开发及应用[J]. 风电场,2020(10): 52-55.
|
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| 〈 |
|
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