考虑疲劳载荷的风电场分散式频率响应策略
TM614; 风电场参与调频时会增加风机的疲劳载荷,导致风电场维护成本上升、运营效益下降.为此,提出一种考虑疲劳载荷的风电场分散式频率响应策略,可在维持风电场调频性能的同时,降低风机疲劳损伤.为实现该目标,首先分析风电场调频及有功控制结构,推导风机线性动力学模型,并构建考虑疲劳载荷的单机频率响应模型.然后基于Jensen尾流模型,推导风电场由尾流波动产生疲劳载荷的解析式,并结合单机模型构建风电场频率响应模型.为减少风电场中央控制器计算压力,采用目标级联分析法将原集中式优化问题拆分成主问题(中央控制器)和多个子问题(本地控制器),建立分散式频率响应策略.最后在MATLAB/Simulink中搭建...
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| Published in | 电力自动化设备 Vol. 42; no. 4; pp. 55 - 62 |
|---|---|
| Main Authors | , , , , , |
| Format | Journal Article |
| Language | Chinese |
| Published |
湖南大学 电气与信息工程学院,湖南长沙410082%国网陕西省电力公司电力调度控制中心,陕西西安710049
10.04.2022
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| Subjects | |
| Online Access | Get full text |
| ISSN | 1006-6047 |
| DOI | 10.16081/j.epae.202201003 |
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| Abstract | TM614; 风电场参与调频时会增加风机的疲劳载荷,导致风电场维护成本上升、运营效益下降.为此,提出一种考虑疲劳载荷的风电场分散式频率响应策略,可在维持风电场调频性能的同时,降低风机疲劳损伤.为实现该目标,首先分析风电场调频及有功控制结构,推导风机线性动力学模型,并构建考虑疲劳载荷的单机频率响应模型.然后基于Jensen尾流模型,推导风电场由尾流波动产生疲劳载荷的解析式,并结合单机模型构建风电场频率响应模型.为减少风电场中央控制器计算压力,采用目标级联分析法将原集中式优化问题拆分成主问题(中央控制器)和多个子问题(本地控制器),建立分散式频率响应策略.最后在MATLAB/Simulink中搭建含80台单机容量为5 MW双馈风机的IEEE RTS-79系统,并通过仿真验证所提策略的有效性. |
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| AbstractList | TM614; 风电场参与调频时会增加风机的疲劳载荷,导致风电场维护成本上升、运营效益下降.为此,提出一种考虑疲劳载荷的风电场分散式频率响应策略,可在维持风电场调频性能的同时,降低风机疲劳损伤.为实现该目标,首先分析风电场调频及有功控制结构,推导风机线性动力学模型,并构建考虑疲劳载荷的单机频率响应模型.然后基于Jensen尾流模型,推导风电场由尾流波动产生疲劳载荷的解析式,并结合单机模型构建风电场频率响应模型.为减少风电场中央控制器计算压力,采用目标级联分析法将原集中式优化问题拆分成主问题(中央控制器)和多个子问题(本地控制器),建立分散式频率响应策略.最后在MATLAB/Simulink中搭建含80台单机容量为5 MW双馈风机的IEEE RTS-79系统,并通过仿真验证所提策略的有效性. |
| Author | 文云峰 李立 王康 张武其 迟方德 杨伟峰 |
| AuthorAffiliation | 湖南大学 电气与信息工程学院,湖南长沙410082%国网陕西省电力公司电力调度控制中心,陕西西安710049 |
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| Author_FL | LI Li WEN Yunfeng CHI Fangde ZHANG Wuqi WANG Kang YANG Weifeng |
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| Keywords | 风电场调频;风机;目标级联分析法;疲劳载荷;尾流效应 |
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| Title | 考虑疲劳载荷的风电场分散式频率响应策略 |
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