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DC/DC Converters for Multi-terminal HVDC system for Integrating Offshore Wind Farms

机译:用于集成海上风电场的多端子HVDC系统的DC / DC转换器

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摘要

The development of far-offshore wind farms and other large-scale renewable energy sources, together with the increasing needs for long distance power transmission is resulting in more HVDC systems being integrated into the traditional AC power network. Due to the capability for operation in isolated AC grids, VSCs are becoming the preferred technology for HVDC systems. Additionally, VSC HVDC allows for more flexible power control within a network than the conventional LCC systems. Moreover, the need for flexible transmission capacity to balance fluctuating power generation from renewable sources over wide geographical areas combined with the corresponding potential benefits in a deregulated power market is expected to favour the concept of VSC based Multi-terminal HVDC system (MTDC).MTDC provides enhanced reliability and functionality and reduces the cost and conversion losses. However, most HVDC transmission schemes are currently constructed as point-to point connections, and there is not yet any clear standardization of voltage levels. Thus, DC/DC converters will become necessary if existing or emerging HVDC links operating with different voltages and different configurations. i.e. monopolar and bipolar should later be interconnected into MTDC configurations. DC/DC converters might also be needed for power flow control in meshed MTDC grids.The goal of this thesis is to summarize the requirements for DC/DC converters in HVDC applications and focus on the modelling and control of DC/DC converters for various applications. The modelling includes both switching and average models. Four types of DC/DC converters intended for different applications are modelled using MATLAB/ Simulink® platform. The functionality of the developed models are demonstrated by simulations in MTDC grid based on the CIGRÉ B4 DC grid test system.
机译:远海风电场和其他大规模可再生能源的发展,以及对长距离​​输电的需求不断增长,导致更多的HVDC系统被集成到传统的交流电网中。由于可以在隔离的AC电网中运行,因此VSC成为HVDC系统的首选技术。此外,与传统的LCC系统相比,VSC HVDC允许在网络内进行更灵活的电源控制。此外,对于灵活的输电能力以平衡来自广阔地理区域的可再生能源发电的需求,以及解除管制的电力市场中相应的潜在利益,预计将支持基于VSC的多终端HVDC系统(MTDC)的概念。提供增强的可靠性和功能,并降低成本和转换损失。但是,目前大多数HVDC传输方案都构建为点对点连接,并且尚无明确的电压等级标准化方法。因此,如果现有或新兴的HVDC链路以不同的电压和不同的配置运行,则DC / DC转换器将变得必要。即单极性和双极性应稍后互连成MTDC配置。在网状MTDC电网中,可能还需要DC / DC转换器来进行潮流控制。本文的目的是总结HVDC应用中对DC / DC转换器的要求,并着重于各种应用中DC / DC转换器的建模和控制。 。建模包括切换模型和平均模型。使用MATLAB /Simulink®平台对四种针对不同应用的DC / DC转换器进行了建模。通过基于CIGRÉB4 DC电网测试系统的MTDC电网仿真,演示了开发模型的功能。

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