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Frequency stability for distributed generation connected through grid-tie inverter

机译:通过并网逆变器连接的分布式发电的频率稳定性

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Conventional power generation systems rely on the rotating inertia of large synchronous generators to maintain stability in the power balance and frequency control loops. The increasing penetration of inverter-connected distributed generation proportionally reduces the fraction of conventional stabilized power used in the distribution system. It is an open question whether the primary feedback loop related to frequency control would remain stable as the fraction of the distributed generation increases in a distribution system. We develop and analyze a control model of a grid-connected distribution system to determine the stability in response to disturbances from the grid, such as grid frequency variations. Our conclusion is that for tie-in inverter connection of distributed generation, the transients can remain stable and grid frequency disturbances will not be amplified as long as the inverter controller is well-tuned. This conclusion holds for a broad range of parameter values explored in this work percentage of the distributed generation penetration, power factor of the load, load power, transmission line impedance, LCL filter and PLL in inverter system.
机译:常规的发电系统依靠大型同步发电机的转动惯量来维持功率平衡和频率控制回路的稳定性。与逆变器连接的分布式发电的普及率不断提高,成比例地降低了配电系统中使用的常规稳定功率的比例。随着配电系统中分布式发电比例的增加,与频率控制相关的主反馈回路是否会保持稳定是一个悬而未决的问题。我们开发并分析并网配电系统的控制模型,以确定响应于电网干扰(例如电网频率变化)的稳定性。我们的结论是,对于分布式发电的并网逆变器连接,只要逆变器控制器经过适当调整,瞬变就可以保持稳定,并且电网频率干扰不会被放大。该结论适用于在分布式发电普及率,负载的功率因数,负载的功率因数,负载的功率,传输线阻抗,LCL滤波器和PLL系统中的工作百分比中探索的广泛参数值。

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