二次配电变压器负载/光伏系统详细建模的重要性

Piyush Gupta, K. Rahimi, R. Broadwater, M. Dilek
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引用次数: 3

摘要

在美国,住宅太阳能光伏(PV)装置正在以非常高的速度增长。2017年,美国约有100万个住宅太阳能光伏装置。这些装置中有很大一部分位于配电变压器的下游,因此与次级变压器相连。为了精确分析光伏系统在配电系统中引起的电压变化,需要对配电变压器二次侧的负载和光伏系统进行精确的建模。在这里的工作中,我们考虑了两种二次电路建模方法,简单二次模型和详细二次模型。在简单二次模型中,配电变压器下面的所有负荷和所有光伏发电机都被建模为一个总负荷和一个总光伏发电机。在详细的二次模型中,对配电变压器以下的所有负载和光伏系统分别进行了建模,并对二次导体和供电滴进行了建模。通过云运动模拟器观察到,采用简单的二次模型会导致不准确和保守的结果。此外,两种建模方法中电压变化最大的位置不同。本文强调了在分析光伏发电时,利用详细的二次模型比简单的二次模型更重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Importance of detailed modeling of loads/PV systems connected to secondary of distribution transformers
Residential solar Photovoltaic (PV) installations are increasing at a very high pace in the United States. In 2017 there are approximately one million residential solar PV installations in the US. A significant share of these installations are downstream of distribution transformers and thus connected to the secondary. To precisely analyze voltage variations induced by PV systems into distribution systems, accurate models of load and PV systems connected to the secondary side of distribution transformers are required. In the work here we consider two secondary circuit modeling approaches, simple secondary and detailed secondary models. In simple secondary models all loads and all PV generators below a distribution transformer are modeled as an aggregate load and an aggregate PV generator. In the detailed secondary models all loads and PV systems below the distribution transformers are modeled individually and secondary conductors and service drops are also modeled. Using a cloud motion simulator it is observed that employing the simple secondary models can lead to inaccurate and conservative results. Moreover, the locations with the greatest voltage changes are different in the two modeling approaches. This paper highlights the importance of utilizing detailed secondary models over simple secondary models in analyzing PV generation.
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