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Restoration Strategies for the South China Interconnected Power System after Generator Tripping following DC System Fault

机译:DC系统故障后发电机跳闸后南方互联电力系统的恢复策略

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When such severe contingency as double pole block fault arouses instability in the South China Interconnected Power System (SCIPS), selective tripping of generating units in the sending end has to be used as a method to maintain system stability. In case the tripped units go through a shutdown and cold start cycle for long duration, it is desirable that they should be hot started and resynchronized to the system as soon as possible to make a quick recovery of the system after fault. Under conditions where the DC fault is permanent, however, such objective is difficult to achieve. This paper presents a control strategy that power generation of some running units be reduced during this process to permit the tripped units to be resynchronized to the system without changing the power level at the sending end, which enables the tripped units to be restored to load rapidly without disturbing system stability. With user models developed in PSS/E, simulations were performed on the SCIPS to investigate the system behavior during reloading process of those thermal units which had been tripped following DC block fault. The results show that power generation at the sending end can be maintained at a reasonable steady level when output of some running units are appropriately reduced during the reloading process of the thermal units, thus having little impact on the system stability, which demonstrates the feasibility and effectiveness of the proposed scheme.
机译:当如此严重的应急作为双极块故障引起南方互联电力系统(募备)的不稳定时,发送端中发电机的选择性跳闸必须用作保持系统稳定性的方法。如果绊倒的单元经过长时间的关闭和冷启动周期,可以尽快热启动并重新同步到系统,以便在故障后快速恢复系统。然而,在直流故障是永久性的条件下,这种目标难以实现。本文提供了一种控制策略,在此过程中减少了一些运行单元的发电,以允许跳闸单元将其重新同步到系统而不改变发送端的功率电平,这使得跳闸单元能够快速恢复加载。没有令人不安的系统稳定性。通过在PSS / E中开发的用户模型,在备率上执行模拟,以研究在DC块故障跟随的那些热单元的加工过程中的系统行为。结果表明,当在热单元的重新加载过程中适当地减小某些运行单元的输出时,发送端的发电可以在合理的稳定水平处保持,因此对系统稳定性影响很小,这符合可行性和可行性拟议计划的有效性。

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