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首页> 外文期刊>IEEE Transactions on Power Systems >Transient Stability Study of Distributed Induction Generators Using an Improved Steady-State Equivalent Circuit Method
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Transient Stability Study of Distributed Induction Generators Using an Improved Steady-State Equivalent Circuit Method

机译:改进的稳态等效电路方法研究分布式感应发电机的暂态稳定性

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摘要

When a short-circuit fault occurs in a distribution network, speed and reactive power consumption of an induction generator (IG) increase dramatically, which may cause system transient stability problems. This paper proposes an improved steady-state equivalent circuit method to determine transient stability of a distribution system or a micro-grid with multiple IGs. Interaction between IGs and distribution network during a fault is investigated. The relationship between network parameters and speeds of IGs is derived using the steady-state equivalent circuits of IGs. The critical speed and critical fault clearing time (CCT) for maintaining system stability are determined using the proposed technique. The factors, which affect transient stability of a multi-IG distribution system, are investigated. The correctness of the proposed method is verified using dynamic simulation.
机译:当配电网络中发生短路故障时,感应发电机(IG)的速度和无功功耗会急剧增加,这可能会导致系统瞬态稳定性问题。本文提出了一种改进的稳态等效电路方法来确定具有多个IG的配电系统或微电网的暂态稳定性。研究了故障期间IG与配电网之间的相互作用。网络参数和IG速度之间的关系是使用IG的稳态等效电路得出的。使用所提出的技术确定维持系统稳定性的临界速度和临界故障清除时间(CCT)。研究了影响多IG配电系统暂态稳定性的因素。动态仿真验证了该方法的正确性。

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