基于高内聚风机的主控软件系统研发与工程应用  

Development and Engineering Application of Main Control Software System Based on High Cohesion Wind Turbine

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作  者:欧阳升 周冬冬 尚铭飞 高远 杨树靖 蓝上海 OUYANG Sheng;ZHOU Dongdong;SHANG Mingfei;GAO Yuan;YANG Shujing;LAN Shanghai(CSSC Haizhuang Windpower Co.,Ltd.,Chongqing 401123,China)

机构地区:[1]中船海装风电有限公司,重庆401123

出  处:《船舶工程》2024年第S02期59-61,共3页Ship Engineering

摘  要:为降低主控系统开发成本,突破现阶段主控软件系统底层绑定制约,适应更新迭代较快的风力发电机组开发现状。项目开展跨平台自主可控主控软件系统研制,最主要是解决主控软件版本多,软硬件捆绑程度较深等问题,提出一种主控软件系统核心控制层与端口层分离方法,适应多工况环境下的复合控制功能需求,加快新机型开发效率,降低开发风险,最终实现海上8 MW和10 MW风电机组的批量化工程应用,并顺利通过现场验收。开发的拥有自主知识产权的风机主控软件,采用模块化设计方法,实现各机型和各硬件平台的快速兼容,同时完全自主可控,避免了核心技术受制于人。In order to reduce the development cost of the main control system,to break the underlying binding constraints of the main control software system at the present stage,to adapt to the development situation of the wind turbine with rapid update and iteration.The development of cross-platform self-controllable main control software system is carried out.The main problem is to solve the main control software version,software and hardware bundled deep problem,proposes a main control software system core control layer and port layer separation method,to adapt to the multi-condition environment of composite control function requirements,speed up the new model development efficiency,reduce development risk.Finally,the large-scale engineering application of 8 MW and 10 MW offshore wind turbines is realized,and the acceptance is successfully passed.It develops the main control software of the fan with independent intellectual property rights,and adopts the modular design method to realize the rapid compatibility of different models and hardware platforms.At the same time,it is fully independent and controllable to avoid the core technology being controlled by others.

关 键 词:风力发电 自主可控 跨平台 开发周期 

分 类 号:TM315[电气工程—电机]

 

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