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Studying the maximum instantaneous non-synchronous generation in an Island system-frequency stability challenges in Ireland

机译:研究Island系统中最大的瞬时非同步发电量-爱尔兰的频率稳定性挑战

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摘要

Synchronous island power systems, such as the combined Ireland and Northern Ireland power system, are facing increasing penetrations of renewable generation. As part of a wider suite of studies, performed in conjunction with the transmission system operators (TSOs) of the All-Island system (AIS), the frequency stability challenges at high and ultra-high wind penetrations were examined. The impact of both largest infeed loss and network fault induced wind turbine active power dips was examined: the latter contingency potentially representing a fundamental change in frequency stability risk. A system non-synchronous penetration (SNSP) ratio was defined to help identify system operational limits. A wide range of system conditions were studied, with results showing that measures such as altering ROCOF protection and enabling emulated inertia measures were most effective in reducing the frequency stability risk of a future Ireland system. © 2014 IEEE.
机译:同步岛电力系统,例如爱尔兰和北爱尔兰电力系统的组合,正面临着可再生能源普及率的提高。作为与全岛系统(AIS)的传输系统运营商(TSO)一起进行的更广泛研究的一部分,研究了高风速和超高风速下的频率稳定性挑战。研究了最大的馈电损耗和网络故障引起的风力发电机有功功率骤降的影响:后者的意外情况可能代表了频率稳定性风险的根本变化。定义了系统非同步渗透(SNSP)比率以帮助确定系统运行限制。对广泛的系统条件进行了研究,结果表明,诸如更改ROCOF保护和启用模拟惯性措施之类的措施对于降低未来爱尔兰系统的频率稳定性风险最有效。 ©2014 IEEE。

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