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Coordinated system services from offshore wind power plants connected through HVDC networks

机译:通过HVDC网络连接的海上风力发电厂的协调系统服务

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This paper presents an overview of power system services in networks involving multiple onshore power systems, a voltage sourced converter (VSC) based high voltage direct current (HVDC) offshore network and an offshore wind power plant (OWPP). A comprehensive list of services regarding onshore as well as offshore network operation – both AC and DC – will be discussed from a state of the art perspective. Among them, the most interesting have been selected and will be treated in more detail and the main contribution of this paper will be to shed light on the most relevant aspects related to their implementation. For example, new findings on onshore AC voltage control are reported, that help the characterisation of potential AC voltage control that a VSC-HVDC station may offer to an onshore AC grid. The HVDC system behind the VSC-HVDC station may connect, through other converters, to another AC power system, or an OWPP, or both. Moreover, the implementation of power oscillation damping (POD) and HVDC voltage control into an OWPP controller is proposed, discussing the main challenges related to their efficient design. Dynamic control challenges are assessed, in particular in relation to the inherent control and communication delays of OWPPs, and their influence on the successful delivery of the targeted services. Furthermore, it is shown that as an HVDC network increases in size from the point-to-point, the handling of onshore short circuits calls for the proper combination of DC chopper(s) and fast DC voltage control, depending on the specific case. All the treated services are crucial from a transmission operator’s (TSO) perspective, to guarantee stability, security of supply and efficiency. For this reason, the paper proposes a qualitative benchmarking of the HVDC station and, when relevant, its combination with OWPPs, against a conventional power station of comparable size. Consequently it will be pointed out what features will be critical for TSOs when partially or completely replacing conventional units with HVDC stations connected to neighbouring systems and/or OWPPs.
机译:本文概述了涉及多个陆上电力系统,基于电压源转换器(VSC)的高压直流(HVDC)海上网络和海上风电厂(OWPP)的网络中的电力系统服务。我们将从最先进的角度讨论有关陆上和海上网络运营(包括交流电和直流电)的全面服务清单。其中,最有趣的部分已被选中,将进行更详细的处理,并且本文的主要贡献将是阐明与实现它们有关的最相关方面。例如,报告了陆上交流电压控制的新发现,这些发现有助于表征VSC-HVDC站可能提供给陆上交流电网的潜在交流电压控制。 VSC-HVDC站后面的HVDC系统可以通过其他转换器连接到另一个AC电力系统或OWPP,或两者。此外,提出了将功率振荡阻尼(POD)和HVDC电压控制实现到OWPP控制器中的方法,并讨论了与它们的高效设计有关的主要挑战。评估了动态控制挑战,特别是与OWPP的固有控制和通信延迟有关,以及它们对成功交付目标服务的影响。此外,还显示出,随着HVDC网络规模的逐点增加,对岸上短路的处理要求根据特定情况适当组合DC斩波器和快速DC电压控制。从传输运营商(TSO)的角度来看,所有经过处理的服务都是至关重要的,以确保稳定性,供应安全性和效率。由于这个原因,本文提出了高压直流输电站的定性基准测试,并在相关时建议将其与OWPP相结合,以相对规模的常规电站为基准。因此,将指出,当用连接到相邻系统和/或OWPP的HVDC站部分或完全替换常规单元时,哪些功能对TSO至关重要。

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