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Tow-step inertia provision with consideration of load type in an islanded wind turbine with grid-supporting voltage control

机译:带有电网支持电压控制的孤岛式风力发电机中考虑负载类型的牵引惯性给定

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The modern power system encounters difficulties in increasing the share of renewables as they are not participating in the total power system inertia, which endangers the strength of the power system against faults. As conventional generation with inherent inertia provision ability are being replaced by converter-based generation, they have to perform this role. Therefore, it is important that the control method of wind turbines seamlessly estimate frequency variation and be designed to make the inertia power command to smooth it. Hence, in this paper, inertia provision in an islanding scenario in a power system by a wind turbine will be studied. The inertia is provided via rotating masses or auxiliary power source, or together in a two-step inertia power injection. The power and energy limitations will also be considered in the comparison of inertia provision in different scenarios. The time is important for the injected inertia power to catch the frequency from falling into a very low nadir and make a different stability border for the share of renewables. In this study, the effect of converter-fed loads will also be investigated.
机译:现代电力系统在增加可再生能源的份额方面遇到了困难,因为它们不参与电力系统的总惯性,这危及了电力系统抵抗故障的力量。随着具有固有惯性提供能力的常规发电被基于转换器的发电所取代,它们必须履行这一职责。因此,重要的是,风力涡轮机的控制方法无缝地估计频率变化并且被设计成使惯性功率指令对其平滑。因此,在本文中,将研究风力涡轮机在电力系统中孤岛情况下的惯性提供。惯性是通过旋转质量块或辅助动力源提供的,或通过两步惯性动力注入一起提供的。在不同情况下比较惯性提供时,还将考虑功率和能量限制。对于注入的惯性功率来说,时间很重要,以使其捕捉到频率降至非常低的最低点并为可再生能源的份额设定不同的稳定性边界。在这项研究中,还将研究转炉供电负载的影响。

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