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Effect of Prime Mover's Characteristics on the Survivability of a Synchronous Generator during Transient Overload Conditions

机译:暂态过载条件下,原动机的特性对同步发电机的生存能力的影响

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Recently, prime-mover stalling phenomenon was observed in a synchronous generator-based DER for large step load changes during experimental testing at the CERTS Microgrid. It is found to highly impact the generator's survivability during transient overload conditions. The stalling occurs in synchronous generator-based DER because of a sustained imbalance between electrical load demand and mechanical power available from the prime mover, thus depleting the generator's stored kinetic energy. In particular, mechanical power capability of the prime mover and stored kinetic energy in the rotating mass are the contributing factors. Therefore, this paper evaluates three different prime movers for DER survivability. The characteristics of most commonly used prime movers such as a reciprocating engine and gas turbine are investigated during transient overload conditions by case studies using PSCAD/EMTDC software.
机译:最近,在CERTS Microgrid的实验测试期间,在基于同步发电机的DER中观察到原动机失速现象,用于较大的阶跃负载变化。在瞬态过载条件下,它会严重影响发电机的生存能力。由于电力需求和原动机可提供的机械功率之间的持续不平衡,在基于同步发电机的DER中发生失速,从而耗尽了发电机存储的动能。特别地,原动机的机械动力能力和旋转质量中存储的动能是影响因素。因此,本文针对DER生存能力评估了三种不同的原动力。通过使用PSCAD / EMTDC软件进行案例研究,研究了瞬态过载条件下最常用的原动机(例如往复式发动机和燃气轮机)的特性。

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