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首页> 外文期刊>IEEE transactions on industrial informatics >An Open-Loop Fundamental and Harmonic Phasor Estimator for Single-Phase Voltage Signals
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An Open-Loop Fundamental and Harmonic Phasor Estimator for Single-Phase Voltage Signals

机译:用于单相电压信号的开环基本和谐波相位估计器

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This article proposes a novel technique for fundamental and selective harmonic phasor estimation of a single-phase voltage signal based on open-loop voltage signal processing approach, under adverse distorted conditions. At heart, a modified fast discrete Stockwell transform (FDST) is used for the phasor estimation. The performance of the FDST is improved by incorporating a new frequency-dependent Gaussian window for capturing the time-localized variations of individual frequency component. The modified window has four parameters, which are selected based on the statistical properties of the given input voltage signal. Furthermore, under off-nominal frequency conditions the spectral leakage problem, faced by the S-transform, is avoided by proposing a modified sample value adjustment based preprocessing stage. Various static and dynamic tests were considered according to the IEEE Standard 1159, IEEE Standard C37.118.1a-2014, and EN-50160 standards under harmonics and interharmonics scenarios. The performance of the proposed method is validated using synthetic voltage signals, simulated voltage signals on 6-bus microgrid model developed in power system computer aided design (PSCAD), and hardware implementation on dSPACE 1103. The rigorous test cases reveal that the proposed phasor measurement unit has a good adaptability to grid frequency drifts, a good harmonic and dc-offset rejection capability, and a very good steady state as well as dynamic response.
机译:本文提出了一种基于防循环电压信号处理方法的单相电压信号的基本和选择性谐波相位估计的新技术,在不利的扭曲条件下。在Heart中,修改了快速离散的储存 - 转换(FDST)用于相平衡估计。通过结合新的频率依赖性高斯窗口来改进FDST的性能,用于捕获各个频率分量的时间局部化变化。修改后的窗口具有四个参数,基于给定输入电压信号的统计特性选择。此外,通过提出基于修改的样本值调整的预处理阶段,避免了在非标称频率条件下,避免了由S转换的光谱泄漏问题。根据IEEE标准1159,IEEE标准C37.118.1A-2014和EN-50160标准进行了各种静态和动态测试,并在谐波和互惠情景下标准。使用合成电压信号进行验证所提出的方法的性能,在电力系统计算机辅助设计(PSCAD)中开发的6柱微电网模型上的模拟电压信号,以及DSPace 1103上的硬件实现。严格的测试用例揭示了所提出的量量测量单元对电网频率漂移,良好的谐波和直流抑制能力以及非常好的稳态以及动态响应具有良好的适应性。

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