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AC Power Theory From Poynting Theorem: Accurate Identification of Instantaneous Power Components in Nonlinear-Switched Circuits

机译:坡印定理的交流功率理论:非线性开关电路中瞬时功率分量的准确识别

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This paper contributes to narrowing the long-standing theoretical gap with power theory (or “power definitions”) for nonlinear ac switching circuits. The true instantaneous energy transformation and storage components of ac circuits are identified from the Poynting Theorem. This paper tackles the problem of power identification from the most general form of energy conservation. Therefore, it is no longer necessary to mathematically “define” powers to fit the engineering solution of a problem. The identification technique does not present problems with physical meaning since it is in full agreement with Maxwell''s Equations. In this paper, the method is applied to the identification of the power components of single-phase switched circuits. Instantaneous energy is decomposed only into energy transformed (related to active power) and energy stored (related to reactive power). Examples that have caused physical interpretation problems with other power theories are presented for illustration and validation.
机译:本文有助于缩小非线性交流开关电路在功率理论(或“功率定义”)方面的长期理论差距。交流电路的真正瞬时能量转换和存储组件可以从坡印亭定理中识别出来。本文从最一般的节能形式解决了功率识别问题。因此,不再需要在数学上“定义”幂以适合问题的工程解决方案。识别技术与Maxwell方程完全一致,因此在物理意义上不会出现问题。本文将该方法应用于单相开关电路功率成分的识别。瞬时能量仅分解为转换后的能量(与有功功率有关)和存储的能量(与无功功率有关)。给出了引起其他幂理论的物理解释问题的示例,以进行说明和验证。

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