首页> 外文期刊>Metrology and Measurement Systems: Metrologia i Systemy Pomiarowe >A CURRENT DECOMPOSITION-BASED METHOD FOR COMPUTATIONALLY EFFICIENT IMPLEMENTATION OF POWER RESOLUTION METERS IN NON-SINUSOIDAL SINGLE-PHASE SYSTEMS
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A CURRENT DECOMPOSITION-BASED METHOD FOR COMPUTATIONALLY EFFICIENT IMPLEMENTATION OF POWER RESOLUTION METERS IN NON-SINUSOIDAL SINGLE-PHASE SYSTEMS

机译:非正弦波单相系统中基于电流分解的功率解析度计算有效实现方法

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For non-sinusoidal single-phase systems, the classical apparent power has been divided into various components using different techniques. These power resolutions generally aim at to provide a tool for the accurate determination of the maximum power factor achievable with a passive compensator and to measure the load's nonlinearity degree. This paper presents a current decomposition-based methodology that can be employed for computationally efficient implementation of the widely recognized non-sinusoidal power resolutions. The proposed measurement method and the original expressions of the power resolutions are comparatively evaluated by considering their computational complexity. The results show that the proposed method has a significant advantage in terms of computational efficiency for the simultaneous measurements of the powers when compared with the original expressions. Finally, in this paper, a PC-based power meter is developed using the proposed measurement method via the LabVIEW programme.
机译:对于非正弦单相系统,经典视在功率已使用不同的技术分为各种分量。这些功率分辨率通常旨在提供一种工具,用于准确确定无源补偿器可实现的最大功率因数,并测量负载的非线性度。本文提出了一种基于当前分解的方法,可用于有效地实现公认的非正弦功率分辨率的高效计算。考虑到它们的计算复杂度,比较了提出的测量方法和功率分辨率的原始表达式。结果表明,与原始表达式相比,该方法在同时测量功率的计算效率方面具有显着优势。最后,在本文中,通过LabVIEW程序使用建议的测量方法开发了基于PC的功率计。

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