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首页> 外文期刊>Energy Conversion & Management >Maintaining stability of standalone Micro-Grid by employing electrical and mechanical fault ride through techniques upon fixed speed wind generation systems
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Maintaining stability of standalone Micro-Grid by employing electrical and mechanical fault ride through techniques upon fixed speed wind generation systems

机译:通过在定速风力发电系统上采用电气和机械故障穿越技术来维持独立微电网的稳定性

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摘要

This study presents two different Fault Ride Through (FRT) techniques to keep and restore stability of Fixed Speed Wind Generation system (FSWGs) installed in standalone Micro-Grid (MG). The first technique is an electrical FRT and is implemented by inserting a series resistance with the terminals of FSWGs during fault to maintain reasonable value of terminal voltage and consequently help stability restoration. The second controller is a mechanical FRT controller and is performed by change the gear ratio of wind generation systems to spill part of extracted mechanical power and consequently improving stability issue. Obtained results proved that each controller able to maintain the stability of FSWGs under the most severe disturbance conditions (400 ms three phase fault at FSWGs terminals). The first controller is faster than the second controller in restoring FSWGs stability. Superior results and performances are obtained when the two FRT techniques are employed simultaneously. Without employing any one of the two FRT techniques, FSWGs is not able to maintain or restore its stability after fault clearing. Consequently, MG will lose one of its micro-sources and cannot keep its stability during the standalone mode, unless load shedding strategy is activated. The two proposed controllers are simple, effective, and economical attractive.
机译:这项研究提出了两种不同的故障穿越技术(FRT),以保持和恢复安装在独立微电网(MG)中的定速风力发电系统(FSWG)的稳定性。第一种技术是电气FRT,通过在故障期间在FSWG的端子中插入串联电阻来实现,以维持合理的端子电压值,从而有助于恢复稳定性。第二控制器是机械FRT控制器,通过改变风力发电系统的齿轮比来执行,以浪费部分提取的机械功率,从而改善稳定性问题。获得的结果证明,每个控制器都能够在最严重的干扰条件下(FSWG端子的400 ms三相故障)维持FSWG的稳定性。在恢复FSWG的稳定性方面,第一个控制器比第二个控制器快。同时使用两种FRT技术可获得卓越的结果和性能。如果不使用两种FRT技术中的任何一种,FSWG在清除故障后将无法维持或恢复其稳定性。因此,除非激活减载策略,否则MG将失去其微源之一,并且无法在独立模式下保持其稳定性。所提出的两个控制器简单,有效且具有经济吸引力。

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