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Application of Interline Power Flow Controller to Increase Transient Stability of Power System | Science Publications

机译:线间潮流控制器在提高电力系统暂态稳定性中的应用科学出版物

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> Problem statement: The Interline Power Flow Controller (IPFC) is a novel device which can increase transient stability of power system. To verify the capability of the effect of IPFC on stability improvement of power system, the suitable mathematical model and control strategy of IPFC are needed to be presented. Approach: This study presented the mathematical model and control strategy of IPFC. The multi-series converters of IPFC are represented by multi-series voltage sources with associate transformer leakage reactance. The parameters of IPFC are modeled into power flow equation and thus it is used to determine control strategy. This study used Bang-Bang control strategy. The swing curves of the three phase faulted power system without and with an IPFC are tested and compared in various cases. Results: The swing curve of system without an IPFC get increased monotonically and thus the system can be considered as unstable whereas the swing curves of system with an IPFC can return to stable equilibrium point. Conclusion: The presented model of IPFC can help us to comprehend the effect of IPFC on transient stability improvement of power system. From simulation results, the IPFC can increase transient stability of power system.
机译: > 问题陈述:线间潮流控制器(IPFC)是一种新颖的设备,可以提高电力系统的暂态稳定性。为了验证IPFC对电力系统稳定性的改善作用,需要提出合适的IPFC数学模型和控制策略。方法:本研究提出了IPFC的数学模型和控制策略。 IPFC。 IPFC的多系列转换器由具有相关变压器泄漏电抗的多系列电压源表示。 IPFC的参数被建模为潮流方程,因此可用于确定控制策略。这项研究使用了Bang-Bang控制策略。在不同情况下,对不带IPFC和带IPFC的三相故障电力系统的摆动曲线进行了测试和比较。结果:不带IPFC的三相电力系统的摆动曲线单调增加,因此可以考虑使用该系统由于不稳定,而带有IPFC的系统的摆动曲线可以返回到稳定的平衡点。 结论:提出的IPFC模型可以帮助我们理解IPFC对电力系统暂态稳定性的改善作用。从仿真结果来看,IPFC可以提高电力系统的暂态稳定性。

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