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Improving frequency stability in low inertia power systems using synthetic inertia from wind turbines

机译:利用风力涡轮机的合成惯性提高低惯性电力系统的频率稳定性

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摘要

In response to ongoing worldwide theme of sustainable development, more and more fossil energy based conventional synchronous generators are being replaced by renewable energy sources for the electricity production in modern power systems. However, some low inertia issues will be brought into future power systems, which will not be conducive to system frequency stability. This paper aims at improving frequency stability in low inertia power systems by using synthetic inertia from DFIG based wind turbines. All simulation work involved in this paper is performed on the software platform MATLAB/SIMULINK. The test model is chosen to be a power system connected by an integrated DFIG based wind farm. After modification and validation the chosen test model will be applied to simulate the GB equivalent large system model. It can be eventually verified that the impacts of synthetic inertia from wind turbines will become more significant on system frequency stability in terms of both ROCOF and frequency nadir when more wind farms are being integrated into future low inertia GB power system.
机译:为了响应全球可持续发展的主题,越来越多的基于化石能源的常规同步发电机被可再生能源替代,用于现代电力系统的电力生产。但是,一些低惯性问题将引入未来的电力系统,这将不利于系统频率稳定性。本文旨在通过使用基于DFIG的风力涡轮机的合成惯性来提高低惯性电力系统的频率稳定性。本文涉及的所有仿真工作均在软件平台MATLAB / SIMULINK上执行。测试模型选择为通过基于DFIG的集成风电场连接的电力系统。修改和验证后,将使用所选的测试模型来模拟GB等效的大型系统模型。最终可以证明,当将更多的风电场集成到未来的低惯性国标电力系统中时,从ROCOF和最低频率两个角度来看,风力发电机组的合成惯性对系统频率稳定性的影响将更加显着。

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