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Assessment of communication-independent grid code compatibility solutions for VSC-HVDC connected offshore wind farms

机译:评估VSC-HVDC连接的海上风电场的与通信无关的电网代码兼容性解决方案

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摘要

Offshore wind farms connected to the mainland through High Voltage DC links based on Voltage Source Converters (VSC-HVDC) are subject to Grid Code (GC) requirements, such as frequency response, Fault Ride Through (FRT) capability, and active and reactive power control. Due to the presence of HVDC links, GC compatibility becomes a challenging task from a control and regulation perspective, since the offshore network AC voltage and frequency are decoupled from the onshore grid voltage and frequency and hence grid-side disturbances are not directly experienced by the Wind Turbines (WTs). To address this challenge of modulating the response of offshore WTs according to the onshore grid conditions, without resorting to dedicated communication schemes, which may introduce delays and reliability concerns, three alternative control strategies are presented and evaluated for the offshore HVDC VSC, which are based only on local measurements. Each strategy can cope with onshore frequency response, FRT and power control requirements at the same time. A coordinated control approach between the WT and HVDC converters is also proposed by integrating a voltage dependent current modulation strategy into the default WT current controllers. Time domain simulations are carried out in DIgSILENT PowerFactory in order to verify the effectiveness of the proposed control schemes.
机译:通过基于电压源转换器(VSC-HVDC)的高压DC链路连接到大陆的海上风电场要遵守电网法规(GC)的要求,例如频率响应,故障穿越(FRT)能力以及有功和无功功率控制。由于存在高压直流输电线路,从控制和调节的角度出发,GC兼容性成为一项具有挑战性的任务,因为海上电网的交流电压和频率与陆上电网的电压和频率是分离的,因此电网侧干扰不会直接受到电网侧的干扰。风力涡轮机(WTs)。为了解决根据陆上电网条件调节离岸WT响应的挑战,而无需诉诸专用通信方案(这可能会带来延迟和可靠性问题),针对离岸HVDC VSC提出并评估了三种替代控制策略,它们基于仅在本地测量时。每种策略都可以同时满足陆上频率响应,FRT和功率控制要求。通过将电压相关的电流调制策略集成到默认的WT电流控制器中,还提出了WT和HVDC转换器之间的协调控制方法。为了验证所提出的控制方案的有效性,在DIgSILENT PowerFactory中进行了时域仿真。

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