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Dynamic hosting capacity analysis for distributed photovoltaic resources-Framework and case study

机译:分布式光伏资源框架和案例研究的动态托管能力分析

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摘要

Distributed photovoltaic systems can cause adverse distribution system impacts, including voltage violations at customer locations and thermal overload of lines, transformers, and other equipment resulting from high current. The installed capacity at which violations first occur and above which would require system upgrades is called the hosting capacity. Current static methods for determining hosting capacity tend to either consider infrequent worst-case snapshots in time and/or capture coarse time and spatial resolution. Because the duration of violations cannot be captured with these traditional methods, the metric thresholds used in these studies conservatively use the strictest constraints given in operating standards, even though both worse voltage performance and higher overloads may be temporarily acceptable. However, assessing the full details requires accurately capturing time-dependence, voltage-regulating equipment operations, and performance of advanced controls-based mitigation techniques. In this paper, we propose a dynamic distributed photovoltaic hosting capacity methodology to address these issues by conducting power flow analysis for a full year. A key contribution is the formulation of time aware metrics to take these annual results and identify the hosting capacity. Through a case study, we show that this approach can more fully capture grid impacts of distributed photovoltaic than traditional methods and the dynamic hosting capacity was 60%-200% higher than the static hosting capacity in this case study.
机译:分布式光伏系统可导致不利的分布系统影响,包括客户位置的电压违规,以及由高电流产生的线,变压器和其他设备的热过载。首次出现违规的安装容量和上述需要系统升级的是托管能力。用于确定托管能力的当前静态方法倾向于在时间和/或捕获粗略时间和空间分辨率时考虑不频繁的最坏情况快照。由于无法使用这些传统方法捕获违规行为,因此这些研究中使用的度量阈值保守使用操作标准中的最严格的约束,即使两个更差的电压性能和更高的过载都可能暂时接受。但是,评估完整细节需要准确地捕获时间依赖性,电压调节设备操作和基于先进控制的缓解技术的性能。在本文中,我们提出了一种动态分布式光伏托管能力方法,通过对整年进行电力流量分析来解决这些问题。关键贡献是制定时间意识的指标,以便采取这些年度结果并确定托管能力。通过案例研究,我们表明,这种方法可以更完全捕获分布式光伏的电网影响而不是传统方法,而动态托管能力比在这种情况下的静态托管能力高出60%-200%。

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