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Studying the Impact of Distributed Solar PV on Power Systems using Integrated Transmission and Distribution Models

机译:使用集成传输和分配模型研究分布式太阳能光伏电源系统的影响

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Rapid growth of distributed energy resources has prompted increasing interest in integrated Transmission (T) and Distribution (D) modeling. This paper presents the results of a distributed generation from solar photovoltaics (DGPV) impact assessment study that was performed using a synthetic T&D model. The primary objective of the study was to present a new approach for DGPV impact assessment, where along with detailed models of transmission and distribution networks, consumer loads were modeled using the physics of end-use equipment, and DGPV was geographically dispersed and connected to the secondary distribution networks. The study highlights (i) how a lack of DGPV forecasting can increase the Area Control Error (ACE) at the transmission level for high penetration levels; and (ii) how capturing transmission voltage changes using integrated T&D can change simulated distribution voltage profiles and voltage regulator operations between integrated T&D and distribution-only simulations.
机译:分布式能源的快速增长促使对集成传输(T)和分布(D)建模的兴趣日益增长。本文介绍了使用合成T&D模型进行的太阳能光伏(DGPV)影响评估研究的分布生成的结果。该研究的主要目标是为DGPV影响评估提出了一种新方法,其中包括传输和配送网络的详细模型,使用最终使用设备的物理建模消费者负载,DGPV地理位置分散并连接到二次分发网络。研究亮点(i)缺乏DGPV预测如何在高渗透水平上增加透射电平的区域控制误差(ACE); (ii)使用集成T&D捕获传输电压变化的变化可以改变集成的T&D集成的分布电压谱和电压调节器操作和仅分布模拟。

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