影响电力系统能量传递有效性的物理现象

L. Czarnecki
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引用次数: 0

摘要

能源从生产者输送到消费者的有效性受到许多物理现象的影响,但这些现象的性质尚不清楚,并且争论了一个多世纪。这场争论产生了许多功率理论和各种不同功率量的定义。所有这些理论在数学上都是正确的,但是对于伴随能量传递和影响能量传递有效性的物理现象的解释不同。这些定义和物理解释影响了功率因数改进的方法,不幸的是,它们可能导致补偿器故障。目前,最先进的功率理论是基于电流物理元件(CPC)的概念。本文利用该理论的结果讨论了影响电力系统能量传递有效性的物理现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physical Phenomena that Affect the Effectiveness of the Energy Transfer in Electrical Systems
The effectiveness of the energy delivery from its producers to customers is affected by a number of physical phenomena, but the nature of these phenomena is unclear and debated over a century. This debate has resulted in a number of power theories and a great variety of definitions of different power quantities. All of them are mathematically correct but differ as to the interpretation of the physical phenomena which accompany the energy transfer and affect the effectiveness of this transfer. These definitions and physical interpretations affect the method of the power factor improvement and unfortunately, they can cause a compensator malfunction. Presently, the most advanced power theory is based on the Currents' Physical Components (CPC) concept. Results of this theory are used in this paper for a discussion on physical phenomena which affect the effectiveness of the energy transfer in electrical systems.
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