论文标题
零续海网格:N-1安全性和主动功率共享
Zero-inertia Offshore Grids: N-1 Security and Active Power Sharing
论文作者
论文摘要
由于丹麦致力于保持其在大量风能份额中的领先地位,因此最近已由丹麦政府批准了新离岸能源岛的建设。这些新岛将是零续航系统,这意味着该岛上不会安装同步生成,并且只有在转换器之间共享功率失衡。为此,本文提出了一种方法,以计算和更新离岸转换器的频率droops,以符合n-1安全标准,以防转换器中断。计算频率下降的收益解决了一个优化问题,该问题考虑到转换器的功率限制以及系统的稳定性。结果,在任何功率不平衡的情况下,提议的控制器确保了离岸系统的安全操作,并允许在反eault前状态下更大的负荷性,如仿真结果所证实。
With Denmark dedicated to maintaining its leading position in the integration of massive shares of wind energy, the construction of new offshore energy islands has been recently approved by the Danish government. These new islands will be zero-inertia systems, meaning that no synchronous generation will be installed in the island and that power imbalances will be shared only among converters. To this end, this paper proposes a methodology to calculate and update the frequency droops gains of the offshore converters in compliance with the N-1 security criterion in case of converter outage. The frequency droop gains are calculated solving an optimization problem which takes into consideration the power limitations of the converters as well as the stability of the system. As a consequence, the proposed controller ensures safe operation of off-shore systems in the event of any power imbalance and allows for greater loadability at pre-fault state, as confirmed by the simulation results.