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Comparison of Communication-based and Coordinated-based Frequency Control Schemes for HVDC-Connected Offshore Wind Farms

机译:基于通信和基于协调的HVDC连接的离岸风电场的频率控制方案的比较

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摘要

As the penetration of wind generation increases, the frequency support from wind turbines is necessary. There are many advantages for the connection between offshore wind farms and electricity grid via a high-voltage direct current (HVDC) system. HVDC transmission systems help wind farms provide frequency regulation and voltage control, which have more flexibility compared to HVAC transmission systems. Several control methods for frequency support have been developed. However, few works compared various control methods for a HVDC-connected offshore wind farm.This work proposes a detailed comparison on the main frequency-support control methods for the HVDC-connected offshore wind farm. These controls are mainly based on the communication-based schemes and the coordinated-based methods. The communication-based scheme uses communication devices to transfer the information of grid frequency to an offshore wind farm directly. The coordinated-based methods transfer the dynamic information of the DC voltage on HVDC via generator emulation control (GEC), and then enable the voltage source converter (VSC) at the wind-farm side to supply frequency regulation. In this work, the synthetic inertial control of wind turbines is considered, which include inertia and droop controllers; furthermore, the capacitors of the HVDC system can release the stored energy to help wind farms for the frequency-regulation function.
机译:随着风发的渗透增加,风力涡轮机的频率支撑是必要的。通过高压直流(HVDC)系统在海上风电场和电网之间的连接存在许多优点。 HVDC传输系统有助于风电场提供频率调节和电压控制,与HVAC传输系统相比具有更大的灵活性。已经开发了几种用于频率支持的控制方法。然而,很少有效化了HVDC连接的海上风电场的各种控制方法。这项工作提出了关于HVDC连接的海上风电场的主要频率支持控制方法的详细比较。这些控件主要基于基于通信的方案和基于协调的方法。基于通信的方案使用通信设备直接将网格频率的信息传送到海上风电场。基于协调的方法通过发电机仿真控制(GEC)在HVDC上传送DC电压的动态信息,然后在风电场侧启用电压源转换器(VSC)以供应频率调节。在这项工作中,考虑了风力涡轮机的合成惯性控制,包括惯性和下垂控制器;此外,HVDC系统的电容器可以释放所存储的能量以帮助频率调节功能的风电场。

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