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Power modulation of Sidney HVDC scheme. I. RAS control concept, realization and field tests

机译:Sidney HVDC方案的功率调制。 I. RAS控制概念,实现和现场测试

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The 200 MW back-to-back Sidney (Nebraska) Converter Station (SCS) provides an asynchronous tie between the east and west AC power networks. In order to maintain electromechanical stability of the east network under worst-case line outage conditions, a remedial action scheme (RAS) was integrated in the HVDC (high-voltage direct-current) control. Basic components of the SCS RAS are frequency-dependent power modulation combined with an effective voltage control in the western network. The authors present the conceptual development of the RAS, as well as details on the RAS control hardware and software. Studies and live system tests have demonstrated the ability of the relatively fast HVDC controls to change the power infeed from the DC station quickly. These rapid changes in power transfer properly coordinated with speed deviation of a nearby generation unit, help maintain, and in some cases improve, the electromechanical stability of the AC system.
机译:200 MW背靠背的悉尼(内布拉斯加州)换流站(SCS)在东西方交流电网之间提供异步连接。为了在最坏情况下的线路中断条件下保持东部网络的机电稳定性,在HVDC(高压直流)控制中集成了补救措施方案(RAS)。 SCS RAS的基本组件是与频率有关的功率调制,并结合了西方网络中的有效电压控制。作者介绍了RAS的概念开发以及RAS控制硬件和软件的详细信息。研究和现场系统测试表明,相对较快的HVDC控件具有快速更改DC站供电的能力。功率传输的这些快速变化与附近发电机组的速度偏差适当地协调在一起,有助于维持并在某些情况下改善了交流系统的机电稳定性。

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