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Controlled network splitting considering transient stability constraints

机译:考虑暂态稳定约束的受控网络分裂

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摘要

Intentional islanding has been extensively studied recently as the last resort to prevent blackouts, mostly from the perspective of thermal static constraints satisfaction. However, as most previous studies on this topic do not address stability issues, their controlled islanding plans might fail to ensure the stability of resulted islands, thereby delaying their acceptance and adoption by utilities. This study makes progress towards addressing stability issues, proposing a controlled islanding model that ensures and improves the transient stability of the islanded system. Linear transient stability constraints are derived off-line, based on the extended equal area criterion, to ensure the first swing transient stability of the synchronous machines, just after the controlled line switching. The islanding model with transient stability constraints is first developed as a mixed-integer nonlinear program (MINLP). Furthermore, the MINLP model is linearised, resulting in a computationally lighter mixed-integer linear program. The objective function of the islanding model is to minimise the generation imbalance of islands and to increase the transient stability margin of the resulting islands, and the obtained optimisation results are validated by the fully fledged dynamic simulation. The efficacy of the proposed method is validated by simulation on the IEEE 118-bus system.
机译:最近,作为防止停电的最后手段,对有意孤岛进行了广泛的研究,主要是从热静态约束满足的角度出发。但是,由于以前有关该主题的大多数研究都没有解决稳定性问题,因此其受控的孤岛计划可能无法确保所得孤岛的稳定性,从而延迟了公用事业对其的接受和采用。这项研究在解决稳定性问题方面取得了进展,提出了一种可控孤岛模型,该模型可确保并提高孤岛系统的暂态稳定性。线性瞬态稳定性约束条件是基于扩展的等面积准则离线生成的,以确保在受控线路切换之后,同步电机的第一摆幅瞬态稳定性。具有暂态稳定约束的孤岛模型首先被开发为混合整数非线性程序(MINLP)。此外,MINLP模型被线性化,从而产生了计算量更轻的混合整数线性程序。孤岛模型的目标功能是最大程度地减少孤岛的发电不平衡,并增加所产生孤岛的暂态稳定裕度,并通过全面的动态仿真验证所获得的优化结果。通过在IEEE 118总线系统上的仿真验证了所提方法的有效性。

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