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Research of generator-tripping strategy for wind-thermal-bundled power transmission system in emergency state

机译:紧急状态风热传输系统发电机跳闸策略研究

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A catastrophic fault in the long-distance wind-thermal-bundled power transmission system (WTTS) would lead to transient angle instability and transmission line overload at the same time in the sending-end of WTTS. According to the traditional emergency control strategy, massive thermal power would be tripped, which is likely to reduce the damping ratio and increase the risk in transient recovery process. Therefore, considering three aspects simultaneously, transient angle instability, transmission line overload and low damping ratio, this paper proposes a coordination generator-tripping of synchronous generators and DFIGs control strategy. Based on the transient energy function method, a practical calculation method is proposed to calculate the least tripping value of synchronous generators. Then according to the overload value of transmission lines and the impact of DFIG penetration on damping ratio, the tripping value of DFIGs can be determined to meet the power system regulations. Finally, the validity of this strategy is verified by the simulation of the actual WTTS by PSD-BPA.
机译:长距离风捆绑电力传输系统(WTTS)中的灾难性断层将导致瞬态不稳定和传输线路在WTT的发送端的同时相同的时间。根据传统的应急控制策略,将绊倒大量的热力,这可能会降低阻尼比率并提高瞬态恢复过程的风险。因此,考虑到三个方面同时,瞬态角度不稳定性,传输线过载和低阻尼比,本文提出了同步发电机和DFIG控制策略的协调发生器跳闸。基于瞬态能量函数方法,提出了一种实用的计算方法来计算同步发电机的最小跳闸值。然后根据传输线的过载值和DFIG穿透对阻尼比的影响,可以确定DFIG的跳闸值以满足电力系统规范。最后,通过PSD-BPA的实际WTTS模拟了这种策略的有效性。

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