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首页> 外文期刊>Electric Power Components and Systems >Coordination of PV Inverters and Voltage Regulators Considering Generation Correlation and Voltage Quality Constraints for Loss Minimization
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Coordination of PV Inverters and Voltage Regulators Considering Generation Correlation and Voltage Quality Constraints for Loss Minimization

机译:PV逆变器和电压调节器的协调考虑到损耗最小化的相关性和电压质量约束

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Distributed generation sources (DGs) are widely considered as important sources of power generation in distribution systems during the last few decades. Despite the substantial benefits of DGs, increasing the penetration level of the DGs can cause dramatic voltage magnitude fluctuations. Coordination of the use of dynamic reactive power sources such as photovoltaic (PV) inverters and voltage control equipment can mitigate rapid voltage magnitude fluctuations. A coordinated volt-var control method is proposed herein to achieve the optimal expected performance (e.g., system losses) while considering the spatial correlation among PV source powers and constraining the variability of voltage magnitudes throughout the distribution network within permissible ranges. The proposed strategy formulates chance constraints on the voltage magnitude and considers the uncertainty of PV power injections over the interval of interest to maintain voltage magnitudes within acceptable limits. The proposed method has been tested on the IEEE 123-node radial distribution system for validation. Moreover, the simulation results demonstrate that the proposed method can effectively mitigate the fast voltage magnitude deviations with an acceptable reduction in system losses in the presence of intermittent renewable resources.
机译:分布式的发电来源(DGS)被广泛认为是在过去几十年中分配系统中发电的重要来源。尽管DGS的效果很大,但增加了DGS的渗透水平可能导致剧烈的电压幅度波动。使用动态无功电源的配位,例如光伏(PV)逆变器和电压控制设备可以减轻快速电压幅度波动。在此提出了一种协调的电压控制方法,以实现最佳预期性能(例如,系统损耗),同时考虑PV源功率之间的空间相关性,并在允许范围内限制整个分配网络中的电压幅度的可变性。所提出的策略制定了对电压幅度的机会限制,并考虑了在可接受限度内保持电压幅度的感兴趣的间隔的PV电力注射的不确定性。已经在IEEE 123节点径向分布系统上测试了所提出的方法,用于验证。此外,仿真结果表明,该方法可以有效地减轻快速电压幅度偏差,在存在间歇可再生资源的情况下,系统损耗的可接受降低。

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