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Adaptive coordination of sequential droop control for PV inverters to mitigate voltage rise in PV-Rich LV distribution networks

机译:PV逆变器序贯下垂控制的自适应协调减轻电压富电压的LV分布网络中的电压升高

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This paper introduces an adaptive sequential droop control strategy for PV inverters to mitigate voltage rise problems in PV-rich LV distribution networks. To facilitate the effective coordination of sequential (Q V and P V) droop control of PV inverters, multiple control areas with the strong coupling nature of PV systems are identified based on the epsilon-decomposition technique. The droop control parameters are tuned and adapted, based on a consensus among PV inverters within each control area. This proposed control strategy inherits the autonomous feature of the droop control for coping with voltage rise issues while being able to avoid curtailing a significant amount of PV production. To evaluate the effectiveness of the proposed control strategy, simulations using MATLAB/Simulink are performed on a real European LV distribution network, considering a PV penetration level of about 150%. The obtained results highlight that the proposed control strategy successfully mitigates voltage rise problems while significantly reducing the amount of curtailed PV generation by approximately 35.6% and 76.2% when compared with the static sequential droop control and the static Q V droop control and adaptive P V droop control, respectively. Simultaneously, the effective contribution among all the PV systems towards voltage rise mitigation is obtained.
机译:本文介绍了PV逆变器的自适应顺序下垂控制策略,以减轻富有光伏的LV分配网络中的电压上升问题。为了便于PV逆变器的顺序(Q V和P v)下垂控制的有效协调,基于epsilon分解技术识别具有PV系统强耦合性质的多个控制区域。根据每个控制区域内的PV逆变器之间的共识,调整和调整下垂控制参数。该建议的控制策略继承了下垂控制的自主特征,以应对电压上升问题,同时能够避免缩小大量的光伏生产。为了评估所提出的控制策略的有效性,考虑到PV渗透水平约150%,对使用MATLAB / Simulink的模拟进行模拟。所获得的结果强调,建议的控制策略成功减轻了电压上升问题,同时与静态顺序下垂控制和静电QV下垂控制和自适应PV下垂控制相比,将缩减光伏发电量显着降低约35.6%和76.2%。分别。同时,获得所有PV系统之间的有效贡献朝向电压上升缓解。

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