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Research on Source-Network Coordination Voltage Control Strategy of Photovoltaic Power Plant Considering the Stability of Inverter Port Voltage

机译:考虑逆变器端口电压稳定性的光伏电站源网协调电压控制策略研究

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At present, the reactive power distribution method considering the reactive power adjustment capacity of the inverter in the photovoltaic (PV) power plant will lead to the output voltage of the inverter exceeding the limit. In particular, the PV inverter adopts the constant reactive power control to support the voltage at point of common coupling (PCC), which has a good effect in the steady-state operation. However, when the system is subject to transient disturbance, the PV inverter cannot flexibly support the voltage level of the system by changing the reactive power output. Therefore, this paper proposes a source-network coordination control strategy aiming at the stability of bus voltage at PCC and inverter port voltage. Firstly, the paper introduced the advantages of constant voltage control of PV inverter. Then, the voltage and reactive power control objectives of the PV Inverter in the PV power plant were calculated by considering the PCC voltage, tie lines, power collection lines, the power of transformers and the voltage loss to realize the voltage and reactive power balance control between the inverters. Finally, an actual PV power plant simulation model was built to analyse the PCC voltage under the two conditions of PV output fluctuation and system fault to verify the effectiveness of the control strategy proposed in this paper. The proposed strategy has engineering application value for the realization of closed-loop voltage control between the power grid and PV power plant and the improvement of the active response ability to the PCC voltage.
机译:目前,考虑光伏电站中逆变器无功调节能力的无功分配方法将导致逆变器的输出电压超过极限。特别是,PV逆变器采用恒定无功功率控制来支持公共耦合点(PCC)处的电压,这在稳态操作中具有良好的效果。但是,当系统遭受瞬态干扰时,PV逆变器无法通过更改无功功率输出来灵活地支持系统的电压水平。因此,本文针对PCC总线电压和逆变器端口电压的稳定性提出了一种源网络协调控制策略。首先,介绍了光伏逆变器恒压控制的优点。然后,通过考虑PCC电压,联络线,集电线,变压器的功率和电压损失,计算出光伏电站中光伏逆变器的电压和无功功率控制目标,以实现电压和无功功率平衡控制。在逆变器之间。最后,建立了一个实际的光伏电站仿真模型,以分析光伏输出波动和系统故障两种情况下的PCC电压,从而验证了本文提出的控制策略的有效性。该策略对实现电网与光伏电站之间的闭环电压控制,提高对PCC电压的主动响应能力具有工程应用价值。

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