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Integration of Behind-the-Meter Solar into Distribution Feeders: The Importance of Time Resolution on Model Results

机译:将仪表背后的太阳能集成到配电馈线中:时间分辨率对模型结果的重要性

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We investigate the impact of time resolution of solar data in modeling distribution grids with significant shares of distributed solar resources. As behind-the-meter solar grows in the United States, power system modelers are charged with understanding power quality implications in distribution systems. While analyses using high temporal resolution data are more realistic, data at this granularity is often not available and this high temporal resolution increases the computational burden significantly. On the other hand, while a low time resolution might be more feasible for these reasons, it might also lead to inaccurate results because of its inability to detect second-to-second dynamics in the solar profile. We model solar growth at different time granularities (from 4 seconds to 10 minutes) in a real-world distribution feeder. Results show that the model's ability to detect voltage flicker is highly affected by the changes in the temporal resolution of data considered. This highlights the importance of low-time resolution solar data in modeling power systems with significant solar penetration.
机译:我们研究了太阳能数据的时间分辨率在建模具有大量分布式太阳能资源的配电网格中的影响。随着美国背后太阳能的发展,电力系统建模人员被要求了解配电系统中电能质量的含义。尽管使用高时间分辨率的数据进行分析更为现实,但通常无法获得这种粒度的数据,并且这种高时间分辨率显着增加了计算负担。另一方面,虽然由于这些原因,较低的时间分辨率可能更可行,但由于它无法检测太阳剖面中的第二到第二动态,因此也可能导致结果不准确。我们在实际的配电馈线中以不同的时间粒度(从4秒到10分钟)对太阳的生长进行建模。结果表明,该模型检测电压闪烁的能力在很大程度上受所考虑数据的时间分辨率变化的影响。这突出了低时间分辨率太阳能数据在模拟具有显着太阳能穿透力的电力系统中的重要性。

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