论文标题

自适应LVRT设置调整以增强可再生电网的电压安全性

Adaptive LVRT Settings Adjustment for Enhancing Voltage Security of Renewable-Rich Electric Grids

论文作者

Wang, Chen, Mishra, Chetan, Biswas, Reetam Sen, Pal, Anamitra, Centeno, Virgilio A.

论文摘要

基于逆变器的可再生能源(RG),尤其是在分销级别,应该在岛屿情况下离线绊倒。但是,岛化检测是通过比较公共耦合点(PCC)的电压和频率测量值的,并以乘车曲线的形式定义的限制。当前的做法是在全年中使用相同的限制,而与操作条件无关。这可能会导致在系统已经弱的情况下绊倒RG,从而通过严重限制负载余量(LM)对电压安全性构成威胁。相反,严重放松这些限制将导致即使在岛屿情况下,这一代人也不会离线。提出的方法着重于在选择性RGS处优化低压乘车(LVRT)设置,作为预防控制,以保持所需的稳态电压稳定性余量,同时又不牺牲岛化期间的可靠性。提出的过程是一种多阶段方法,在每个阶段,根据各种敏感性,筛选了一部分估计质量质量较差的解决方案。完整的延续功率流(CPFlow)仅在开始和最后阶段运行,剩下的少数候选解决方案,从而在计算时间上大大降低。该方法的有效性在IEEE 9总线系统上得到了证明。

Inverter based renewable generation (RG), especially at the distribution level, is supposed to trip offline during an islanding situation. However, islanding detection is done by comparing the voltage and frequency measurements at the point of common coupling (PCC), with limits defined in the form of ride-through curves. Current practice is to use the same limit throughout the year independent of the operating conditions. This could result in the tripping of RG at times when the system is already weak, thereby posing a threat to voltage security by heavily limiting the load margin (LM). Conversely, heavily relaxing these limits would result in scenarios where the generation does not go offline even during an islanding situation. The proposed methodology focuses on optimizing low-voltage ride-through (LVRT) settings at selective RGs as a preventive control for maintaining a desired steady-state voltage stability margin while not sacrificing dependability during islanding. The proposed process is a multi-stage approach, in which at each stage, a subset of estimated poor-quality solutions is screened out based on various sensitivities. A full continuation power flow (CPFLOW) is only run at the beginning and in the last stage on a handful of remaining candidate solutions, thereby cutting down heavily on the computation time. The effectiveness of the approach is demonstrated on the IEEE 9-bus system.

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