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Role of multi-infeed VSC-HVDC on dynamic behaviour of future north scotland transmission system

机译:多馈VSC-HVDC在未来北苏格兰输电系统动态行为中的作用

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Due to the expected proliferation of HVDC systems up to and beyond 2020 into the Great British transmission network, it is anticipated that in some locations two or more HVDC converter stations will be installed with only a short electrical distance between them and will form a multi-infeed (MI)HVDC system. This is a particular concern in the North of Scotland. This paper investigates the impact of MI-HVDC links on the North Scotland system for two different system generation mixes. A list of control schemes has been formulated to assess the dynamic performance of the developed realistic system under typical loading scenarios. The work has been conducted in a DIgSILENT Power Factory using case study simulations of the integrated North Scotland system model. From the set of case studies, it has been found that the AC voltage control allocation within the HVDC links has a significant influence on the small-disturbance angle and transient voltage stability of the system.
机译:由于预计到2020年及以后,高压直流输电系统将扩散到英国的输电网络中,因此预计在某些位置将安装两个或多个高压直流输电换流站,并且它们之间只有很短的电气距离,并且将形成多个馈电(MI)HVDC系统。这在苏格兰北部尤其令人关注。本文研究了MI-HVDC链路对北苏格兰系统的两种不同系统发电混合的影响。已经制定了一系列控制方案,以评估在典型的载荷情况下已开发的现实系统的动态性能。该工作是在DIgSILENT发电厂中进行的,使用的是北苏格兰综合系统模型的案例研究模拟。从一组案例研究中发现,HVDC链路内的交流电压控制分配对系统的小干扰角和瞬态电压稳定性有重大影响。

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