Optimization of FRT active power performance of a DFIG during transient grid faults

Lasantha Gunaruwan Meegahapola, D. Flynn, Tim Brian Littler
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引用次数: 4

Abstract

Optimal fault ride-through (FRT) conditions for a doubly-fed induction generator (DFIG) during a transient grid fault are analyzed with special emphasis on improving the active power generation profile. The transition states due to crowbar activation during transient faults are investigated to exploit the maximum power during the fault and post-fault period. It has been identified that operating slip, severity of fault and crowbar resistance have a direct impact on the power capability of a DFIG, and crowbar resistance can be chosen to optimize the power capability. It has been further shown that an extended crowbar period can deliver enhanced inertial response following the transient fault. The converter protection and drive train dynamics have also been analyzed while choosing the optimum crowbar resistance and delivering enhanced inertial support for an extended crowbar period.
电网暂态故障时DFIG的FRT有功性能优化
分析了电网暂态故障时双馈感应发电机(DFIG)的最佳故障穿越(FRT)条件,重点研究了有功发电剖面的改善问题。研究了瞬态故障时撬棍激活的过渡状态,以获取故障期间和故障后的最大功率。研究结果表明,操作滑差、故障严重程度和撬棍阻力对DFIG的供电能力有直接影响,通过选择撬棍阻力可以优化DFIG的供电能力。进一步表明,延长撬棍周期可以增强瞬态故障后的惯性响应。在选择最佳撬棍阻力和提供延长撬棍周期的增强惯性支持时,还分析了变流器保护和传动系统动力学。
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