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Uncertainty Principle and Power Quality Sensing and Analysis in Smart Substation

机译:智能变电站的不确定性原理与电能质量传感及分析

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摘要

Different kinds of power quality can be sensed in a smart substation. Power quality sensing and analysis are basic functions of a smart substation for situation awareness. The uncertainty principle, which states that the time uncertainty and frequency uncertainty cannot be minimized simultaneously, is a bottleneck problem that undermines the faithfulness of sensing and confines the accuracy of analysis. This paper studies the influence of the uncertainty principle on the power quality monitoring issue in detail and solves the problem by ideal atomic decomposition (IAD). The new method employs a pair of time and frequency bases where the power quality waveform is sensed. Then, both time uncertainty and frequency uncertainty can be minimized simultaneously. The sensing process is realized by orthogonal matching pursuit (OMP). By simulated and field power quality tests with comparisons of developed methods, the new method can give faithful sensing and accurate analysis for various power qualities, and is validated as an effective power quality monitoring method in smart substations.
机译:可以在智能变电站中感测不同种类的电能质量。电能质量传感和分析是智能变电站的基本功能,以实现情况意识。不确定性原则,即不确定的不确定性和频率不确定性不能同时最小化,是一种瓶颈问题,破坏了传感的忠诚,并限制了分析的准确性。本文研究了不确定原理对电力质量监测问题的影响,并通过理想的原子分解(IAD)解决了问题。新方法采用一对时间和频率基础,其中感测电力质量波形。然后,可以同时最小化时间不确定度和频率不确定性。通过正交匹配追踪(OMP)实现传感过程。通过模拟和现场电能质量测试与开发方法的比较,新方法可以为各种电力质量提供忠诚的感应和准确分析,并被验证为智能变电站的有效电能质量监测方法。

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