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DC Grid Control Concept for Expandable Multi-terminal HVDC Transmission Systems

机译:可扩展多终端HVDC传输系统的DC网格控制概念

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In areas where there are already several HVDC links in operation or under construction, it is more likely that a DC grid emerges as a gradual process. Although the DC grid control concept has been widely discussed, the implementation in the expandable multi-terminal HVDC (MTDC) transmission systems still faces challenges. The existing converter control system needs to be adjusted when a point-to-point (PtP) link is operated into MTDC system, or when an additional converter is interconnected with an existing MTDC system, or even when a new DC grid control strategy is applied. In this paper, a new DC grid control concept is proposed that conserves and uses the existing converter control when an existing PtP link is extended into MTDC system or the existing MTDC system is expanded. An interface is proposed to decouple the DC grid secondary with converter control structures. By using this interface, three different control modes, i.e. DC voltage, active power/current flow, and DC voltage droop control, can be achieved by simply changing the droop line characteristics of the converter. Furthermore, this interface also provides the possibility to change the response time of the existing DC voltage control and the use of auxiliary control functions, e.g.: frequency, power oscillation damping, and emergency power controls. Simulation results show that the converter stations can be coordinated using the proposed DC grid control concept. It is expected that the proposed DC grid control concept can pave the way to realize multi-vendor MTDC transmission systems.
机译:在那里有已投产或在建的几个环节高压直流输电领域,它更可能是DC电网出现一个渐进的过程。虽然DC电网控制概念已被广泛讨论的,在膨胀的多终端HVDC(MTDC)传输系统的实施依然面临挑战。现有的转换器控制系统需要时的点至点(PTP)链路被操作成MTDC系统进行调整,或当一个附加的转换器与现有MTDC系统,或甚至当互连的新DC电网控制策略被应用于。在本文中,一个新的DC电网控制概念提出,蜜饯和用途当现有的PtP链路延伸到MTDC系统或现有的系统MTDC现有电力变换器的控制已展开。接口提出去耦DC电网次级与转换器的控制结构。通过使用这个接口,3种不同的控制模式,即DC电压,有功功率/电流流动,并且直流电压的下垂控制,可以通过简单地改变转换器的下垂线的特性来实现。此外,该接口还提供改变现有的DC电压的控制和使用的辅助控制功能,例如:频率,功率振荡阻尼,以及应急电源控制的响应时间的可能性。仿真结果表明,该换流站可以使用所提出的直流电网控制概念相协调。据预计,所提出的直流电网控制概念可以铺平道路,实现多厂商MTDC输电系统的方式。

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