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Fast QSTS for distributed PV impact studies using vector quantization and variable time-steps

机译:使用矢量量化和可变时间步骤的分布式PV影响研究的快速QST

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摘要

As the penetration level of PV systems increases, utilities are in great need of methods to quickly and effectively analyze PV's impact on electric distribution systems. Compared to other conventional methods, quasi-static time-series (QSTS) based analysis has demonstrated its advantages of accurately capturing the impact of interest, e.g. control device operations, and min and max voltages. However, yearlong QSTS simulation with 1-second granularity is currently too computationally expensive for regular use. Therefore, vector quantization (VQ) and variable time-step (VTS) solution methods have been developed to accelerate QSTS simulation. This paper proposes the combination of VQ with VTS. We investigate the effectiveness of implementing VQ in combination with 2 VTS algorithms, predetermined time-step (PT) and VTS with backtrack downsampling (VTS-BD) to demonstrate a runtime reduction of 99.55% with error metrics below acceptable thresholds.
机译:随着光伏系统的渗透水平的增加,公用事业公司实际上需要快速有效地分析PV对电配电系统的影响。与其他传统方法相比,基于准静态时间序列(QST)的分析证明了精确捕获利益影响的优点,例如,控制设备操作,最小和最大电压。但是,随着1秒粒度的一年QSTS模拟目前太昂贵,可定期使用。因此,已经开发了向量量化(VQ)和可变时间步骤(VTS)解决方案方法以加速QSTS仿真。本文提出了VQ与VTS的组合。我们研究了与2VTS算法,预定时间步长(PT)和VTTS结合实现了VQ的有效性,其中具有回溯采样(VTS-BD),以证明具有低于可接受阈值的错误度量的99.55 %的运行时降低。

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