王霄鹤, 杨海超, 宋爽, 杨玉新, 殷贵, 王克. 海上风电场经66 kV海缆送出系统过电压机理[J]. 中国电力, 2023, 56(11): 29-37, 48. DOI: 10.11930/j.issn.1004-9649.202208087
引用本文: 王霄鹤, 杨海超, 宋爽, 杨玉新, 殷贵, 王克. 海上风电场经66 kV海缆送出系统过电压机理[J]. 中国电力, 2023, 56(11): 29-37, 48. DOI: 10.11930/j.issn.1004-9649.202208087
WANG Xiaohe, YANG Haichao, SONG Shuang, YANG Yuxin, YIN Gui, WANG Ke. Overvoltage Mechanism of 66 kV Submarine Cable Transmission System for Offshore Wind Farm[J]. Electric Power, 2023, 56(11): 29-37, 48. DOI: 10.11930/j.issn.1004-9649.202208087
Citation: WANG Xiaohe, YANG Haichao, SONG Shuang, YANG Yuxin, YIN Gui, WANG Ke. Overvoltage Mechanism of 66 kV Submarine Cable Transmission System for Offshore Wind Farm[J]. Electric Power, 2023, 56(11): 29-37, 48. DOI: 10.11930/j.issn.1004-9649.202208087

海上风电场经66 kV海缆送出系统过电压机理

Overvoltage Mechanism of 66 kV Submarine Cable Transmission System for Offshore Wind Farm

  • 摘要: 过电压水平是海上风电场交流送出系统的关键参数,对于系统设计、设备选型具有重要影响。为掌握影响海上风电场送出系统过电压水平的关键因素,准确评估系统过电压,对海上风电场经66 kV海缆送出系统的过电压机理展开研究。首先,分析海上风电场经66 kV海缆送出系统的拓扑结构及控制保护策略;然后,从无故障甩负荷过电压、单相接地故障甩负荷过电压、空载长线过电压方面研究海上风电场经66 kV海缆送出系统的过电压机理,并在此基础上,研究中性点接地电阻值对于66 kV海上风电送出系统过电压的影响;最后,基于PSCAD/EMTDC平台,构建了海上风电场经66 kV海缆送出系统的仿真模型并进行仿真。研究结果表明:系统的接地电阻和风电机组控制保护策略是影响海上风电场经66 kV海缆送出系统过电压水平的关键因素,随着接地电阻的变化,系统的控制保护动作顺序会发生变化,系统在不同接地电阻取值范围时将呈现出不同的过电压特性。

     

    Abstract: Overvoltage level is the key parameter of the offshore wind power transmission system, which has significant impact on the system design and equipment selection. In order to evaluate the key impact factors of the overvoltage level of the offshore wind farm transmission system and calculate its overvoltage accurately, the overvoltage mechanism of offshore wind farm 66 kV submarine cable transmission system is studied in this paper. Firstly, the topology, control and protection strategy of the 66 kV offshore wind power transmission system are analyzed. And then its overvoltage mechanism is studied from the aspects of fault-free load shedding overvoltage, single phase to ground fault load shedding overvoltage and load-free overvoltage. On this basis, the influence of the neutral point grounding resistance on the overvoltage of the 66 kV transmission system is studied. Finally, a simulation model of the offshore wind power transmission system is established in the PSCAD/EMTDC environment and simulation studies are conducted. The research results show that the grounding resistance of the system and the control and protection strategy of the wind turbine are the main impact factors of the overvoltage level in the 66 kV transmission system. With the variation of the grounding resistance, the control and protection actions of the system will change. The system shows different overvoltage characteristics under different grounding resistance ranges.

     

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