Converter Station Intelligent Monitoring and Management System of Offshore Wind Farm

QING Zilong,WANG Wei,LIU Jianxin

Distributed Energy ›› 2023, Vol. 8 ›› Issue (3) : 40-46.

PDF(1416 KB)
PDF(1416 KB)
Distributed Energy ›› 2023, Vol. 8 ›› Issue (3) : 40-46. DOI: 10.16513/j.2096-2185.DE.2308306
Application Technology

Converter Station Intelligent Monitoring and Management System of Offshore Wind Farm

Author information +
History +

Abstract

The existing integrated automation system of onshore converter stations cannot meet the monitoring and management requirements of offshore converter stations in the future, so this paper puts forward the concept of intelligent construction of converter station. The paper first analyzes the operation and maintenance characteristics of offshore wind farm converter stations and current status of integrated automation system of converter stations. Based on requirement analysis of the field intelligent monitoring and remote intelligent operation, and maintenance and management of offshore converter station, through the application research of technologies such as comprehensive perception of equipment status, unmanned machine inspection, active warning of equipment abnormalities, intelligent diagnosis of equipment faults, intelligent linkage of main and auxiliary equipment, one-key sequential control of remote operation, intelligent control of personnel behavior, and intelligent decision-making of operation and maintenance management, this paper puts forward the design philosophy of intelligent monitoring and management integration system for converter stations in offshore wind farms, and studies and analyzes the architecture and functional characteristics of the system. It provides a feasible scheme for the intelligent and wisdom construction of the offshore converter station.

Key words

offshore wind farm / offshore converter station / smart type / integrated monitoring and management system

Cite this article

Download Citations
Zilong QING , Wei WANG , Jianxin LIU. Converter Station Intelligent Monitoring and Management System of Offshore Wind Farm[J]. Distributed Energy Resources. 2023, 8(3): 40-46 https://doi.org/10.16513/j.2096-2185.DE.2308306

References

[1]
王秀丽,赵勃扬,黄明煌,等. 大规模深远海风电送出方式比较及集成设计关键技术研究[J]. 全球能源互联网2019, 2(2): 138-145.
WANG Xiuli, ZHAO Boyang, HUANG Minghuang, et al. Research of integration methods comparison and key design technologies for large scale long distance offshore wind power[J]. Journal of Global Energy Interconnection, 2019, 2(2): 138-145.
[2]
徐进,金逸,胡从川,等. 海上风电集群电能组合输送方式研究[J]. 电网与清洁能源2016, 32(11): 101-113.
XU Jin, JIN Yi, HU Congchuan, et al. Research on combined power transmission scheme for offshore wind farm cluster[J]. Power System and Clean Energy, 2016, 32(11): 101-113.
[3]
朱家宁,张诗钽,葛维春,等. 海上风电外送及电能输送技术综述[J]. 发电技术2022, 43(2): 236-248.
ZHU Jianing, ZHANG Shitan, GE Weichun, et al. Overview of offshore wind power transmission and power transportation technology[J]. Power Generation Technology, 2022, 43(2): 236-248.
[4]
卿子龙,孔庆香. 海上风电场智慧型监控管理一体化系统[J]. 分布式能源2021, 6(5): 59-63.
QING Zilong, KONG Qingxiang. Intelligent monitoring and management integrated system of offshore wind farms[J]. Distributed Energy, 2021, 6(5): 59-63.
[5]
卿子龙,柏嵩,刘剑欣. 海上升压站智慧化建设研究[J]. 电工电气2021 (12): 73-76.
QING Zilong, BAI Song, LIU Jianxin. Discussion on the intelligent construction of offshore booster station[J]. Electrotechnics and Electric, 2021(12): 73-76.
[6]
徐志伟. 海上风电升压站平台设计及有限元计算分析[J]. 内蒙古电力技术2022, 40(1): 44-48.
XU Zhiwei. Design and finite element analysis of offshore wind power booster station platform[J]. Inner Mongolia Electric Power, 2022, 40(1): 44-48.
[7]
中国电力企业联合会. 110(66) kV~220 kV智能变电站设计规范:GB/T 51072—2014[S]. 北京:中国计划出版社,2014.
[8]
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.
[9]
全国电力电子系统和设备标准化技术委员会. 柔性直流输电系统成套设计规范:GB/T 35703—2017[S]. 北京:中国标准出版,2017.
[10]
全国量度继电器和保护设备标准化技术委员会. 柔性直流输电控制与保护设备技术要求:GB/T 35745—2017[S]. 北京:中国标准出版,2017.
[11]
景乾明,薛海平,曹卫国,等. IEC 61850在高压直流输电系统中的应用[J]. 江苏电机工程2012, 31(2): 50-52.
JING Qianming, XUE Haiping, CAO Weiguo, et al. Application of IEC 61850 in HVDC system[J]. Jiangsu Electrical Engineering, 2012, 31(2): 50-52.
[12]
梁旭明,常乃超. 数字化智能换流站[J]. 电力系统自动化2009, 33(24): 98-103.
LIANG Xuming, CHANG Naichao. Digital smart converter station[J]. Automation of Electric Power Systems, 2009, 33(24): 98-103.
[13]
陆如,于惠鸣,刘自超. 基于全景数据系统的特高压直流换流站监控方案[J]. 通信电源技术2019, 36(7): 80-83.
LU Ru, YU Huiming, LIU Zichao. Monitoring scheme of UHVDC converter station based on panoramic data system[J]. Communication Power Technology, 2019, 36(7): 80-83.
[14]
唐偲,施世鸿. 换流站不同在线监测系统接入方案研究[J]. 南方能源建设2017, 4(): 47-51.
Abstract
S1
TANG Si, SHI Shihong. Different online monitoring systems access scheme of the converter station[J]. Southern Energy Construction, 2017, 4(): 47-51.
S1
[15]
杨学广,梁家豪. 换流站设备运行状态智能监控系统的研究与应用[J]. 电工技术2019 (5): 58-60, 70.
YANG Xueguang, LIANG Jiahao. Research and application of intelligent monitoring system for operation state of equipment in converter station[J]. Electric Engineering, 2019 (5): 58-60, 70.
[16]
黄晨,王应坤. 智能机器人应用下的换流站巡视模式探讨[J]. 湖南电力2018, 38(5): 42-44.
HUANG Chen, WANG Yingkun. Discussion on the equipment inspection mode of convertion station in the application of intelligent robot[J]. Hunan Electric Power, 2018, 38(5): 42-44.
[17]
陆勇,王世巍,李攀,等. 特高压换流站工程多源视频智能监控研究[J]. 现代工业经济和信息化2020, 10(11): 60-61.
LU Yong, WANG Shiwei, LI Pan, et al. Research on multi-source video intelligent monitoring of UHV converter station project[J]. Modern Industrial Economy and Informatization, 2020, 10(11): 60-61.
[18]
吕继伟. 基于泛在电力物联网的换流站在线监测系统优化综述[J]. 电力工程技术2019, 38(6): 9-15.
LYU Jiwei. Optimization survey of online monitoring system for converted station based on ubiquitous power IoT[J]. Electric Power Engineering Technology, 2019, 38(6): 9-15.
[19]
范堃,房萍,王申强. 一键顺控智能化拟票技术研究与应用[J]. 电网与清洁能源2019, 35(10): 43-49.
FAN Kun, FANG Ping, WANG Shenqiang. Research and application of intelligent drafting operation order technology with one-key sequential control[J]. Power System and Clean Energy, 2019, 35(10): 43-49.
[20]
闫琪,杨源. 海上换流站智能辅助控制系统方案设计[J]. 南方能源建设2021, 8(3): 118-121.
YAN Qi, YANG Yuan. Scheme design of intelligent auxiliary control system for offshore conversion station[J]. Southern Energy Construction, 2021, 8(3): 118-121.
[21]
董靓靓,王顺亮,马俊鹏,等. 基于LM法的换流站关键设备宽频建模方法研究[J]. 智慧电力2022, 50(2): 9-14.
DONG Liangliang, WANG Shunliang, MA Junpeng, et al. Broadband modeling of key equipment in converter station based on Levenberg-Marquardt algorithm[J]. Smart Power, 2022, 50(2): 9-14.
[22]
崔宗清,肖异. 中州±800 kV换流站阀厅火灾监控系统的设计研究[J]. 电世界2016, 57(8): 4-8.
[23]
李靖翔. 直流换流站智能锁控系统的设计与实现[J]. 电工技术2017(6): 59-60.
[24]
朱添益,戴逢哲,程思举. 基于图像处理技术的换流站智能扫描系统[J]. 电气技术2020, 21(4): 25-29.
ZHU Tianyi, DAI Fengzhe, CHENG Siju. An intelligent scanning system of converter station based on image processing[J]. Electrical Technology, 2020, 21(4): 25-29.
[25]
于浩,王旭东,金鑫,等. 基于5G技术在换流站中的智能应用分析[J]. 电气自动化2021, 43(1): 21-22, 62.
YU Hao, WANG Xudong, JIN Xin, et al. Analysis of intelligent 5G application at converter stations[J]. Electric Automatization, 2021, 43(1) : 21-22, 62.
[26]
龙英云,黄尚雄,黄坤. 基于AI换流站智能监控辅助运行决策系统应用探索[J]. 科学与信息化2019(19): 24-25, 27.

Funding

Science and Technology Project of State Grid Electric Power Research Institute(524609210012)
PDF(1416 KB)

Accesses

Citation

Detail

Sections
Recommended

/