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Remedial actions to enhance stability of low-inertia systems

机译:采取补救措施以增强低惯性系统的稳定性

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Increased penetration of renewable generation is expected to replace conventional generators and reduce system inertia. Future low-inertia systems are expected to include additional power sources to enhance stability by mimicking inertia and damping of conventional generators. This paper introduces such remedial actions in the formulation of direct methods for transient stability assessment. We extend our previous work on robust stability and resiliency certificates to include optimal tuning of inertia and damping coefficients for transient stability enhancement. The goal is to limit the fault-on trajectory in order to maintain the system inside its stability region. The advantage of this approach is the ability to guarantee system stability for a wider range of faults eliminating the need to carry out time-consuming simulations. An additional contribution of this paper is a novel formulation of the robust stability and resiliency certificates, which relaxes our optimization problem and allows to obtain significantly better results.
机译:预计可再生生成的渗透率增加将取代常规发电机并减少系统惯性。预计未来的低惯性系统将包括额外的电源,以通过模仿惯性和传统发电机的阻尼来提高稳定性。本文介绍了瞬态稳定性评估的直接方法方面的这种补救措施。我们以强大的稳定性和弹性证书扩展了我们以前的工作,以包括惯性和瞬态稳定性增强的惯性和阻尼系数的最佳调整。目标是限制故障轨迹,以便将系统维持在其稳定区域内。这种方法的优点是能够保证更广泛的故障系统稳定性,消除了需要耗费耗时的模拟的需要。本文的额外贡献是一种新颖的制定,对稳健稳定性和弹性证书进行了放松的优化问题,并允许获得明显更好的结果。

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