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A Frequency Deadband-Based Virtual Inertia Control for Grid-Connected Power Converters

机译:并网功率变换器的基于频率死区的虚拟惯性控制

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摘要

Unlike synchronous generators, renewable generators, e.g. photovoltaic (PV) arrays and wind turbines, cannot provide rotating inertia when connected to the grid through power converters. As a result, excessive grid frequency deviations are likely to occur in the event of generator tripping and/or load shedding. An effective approach to increase inertia is achieved by proportionally associating the dc-link voltage of grid-connected power converters with the grid frequency, allowing power converters to generate a fixed amount of virtual inertia for frequency support. To further develop this idea, this paper proposes a frequency deadband-based virtual inertia controller for power converters to perform inertia responses during frequency events. The proposed controller enables the increase of inertia in a shorter time duration, leading to an improved frequency nadir and a reduction of the energy required for inertia emulation. Finally, simulated and experimental results are presented to verify its effectiveness.
机译:与同步发电机不同,可再生发电机例如光伏(PV)阵列和风力涡轮机通过功率转换器连接到电网时无法提供旋转惯性。结果,在发电机跳闸和/或甩负荷的情况下,可能会发生过多的电网频率偏差。通过将并网功率转换器的直流链路电压与电网频率成比例地关联,可以实现提高惯性的有效方法,从而使功率转换器生成固定量的虚拟惯量以支持频率。为了进一步发展这一思想,本文提出了一种基于频率死区的虚拟惯性控制器,用于功率转换器在频率事件期间执行惯性响应。所提出的控制器能够在较短的时间内增加惯性,从而改善频率最低点并减少惯性仿真所需的能量。最后,通过仿真和实验结果验证了其有效性。

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