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首页> 外文期刊>IEEE Transactions on Power Delivery >Impact of DC Breaker Systems on Multiterminal VSC-HVDC Stability
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Impact of DC Breaker Systems on Multiterminal VSC-HVDC Stability

机译:直流断路器系统对多端子VSC-HVDC稳定性的影响

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The use of VSC-HVDC grids for offshore wind farm integration will require the use of dc breaker systems and presently they require dc reactors to limit the rate of rise of fault current. The introduction of large dc reactors throughout a VSC-HVDC system can have a significant impact on its stable operation and will require additional control. This paper analyzes this problem and proposes a PSS-like control (DCPSS) to aid dc grid stability and cope with this effect. A generalized analytical model for studies on dc voltage control is presented. Key stability and transient performance issues caused by the use of the dc reactors in a multiterminal system are investigated by analyzing poles, zeros, and frequency responses of open-loop and closed-loop models. Design and location identification methods for the DCPSS are provided. An excellent damping enhancement is achieved by this controller. The analytical studies and time-domain simulations in this paper are performed based on two VSC-HVDC models.
机译:将VSC-HVDC电网用于海上风电场整合将需要使用直流断路器系统,目前,它们需要直流电抗器以限制故障电流的上升速度。在整个VSC-HVDC系统中引入大型直流电抗器会对其稳定运行产生重大影响,并将需要其他控制。本文分析了这一问题,并提出了一种类似于PSS的控制(DCPSS),以帮助直流电网稳定并应对这种影响。提出了用于直流电压控制研究的通用分析模型。通过分析开环和闭环模型的极点,零点和频率响应,研究了由于在多端子系统中使用直流电抗器而引起的关键稳定性和瞬态性能问题。提供了DCPSS的设计和位置识别方法。该控制器可实现出色的阻尼增强。本文基于两个VSC-HVDC模型进行了分析研究和时域仿真。

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