Influence of high-frequency electrotechnological installations on generation of harmonics in a network

Y. Blinov, B. Kachanov, V. Ishin
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Abstract

An investigation of the harmonics generation problem is a complicated task due to the wish to have the exact description of the problem that leads to a large volume of necessary calculations and experiments. The coupling simulation of network and electrotechnological installations, for example, 400 kW/0.44 MHz, which can correspond, for example, to HF generator, is a very complicated task due to the large frequency ratio (more then 8000 times) between network and installation that leads to the significant increase of the calculation time. At the same time, coupling simulation gives full and exact information about harmonics generation in a network. But electromagnetic processes in the HF electrical part of the generator have steady-state values in the time range 40-100 /spl mu/s. Besides, the HF generator contains low frequency filter elements that prevent the HF harmonics (0.44 MHz and above) penetration in a network and permit to define the level of network harmonics with a good accuracy. The different frequency characteristics of the network-generator system, and their comparison with time-domain study, are overviewed.
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高频电工设备对电网谐波产生的影响
谐波产生问题的研究是一项复杂的任务,因为希望对问题进行准确的描述,从而导致大量必要的计算和实验。以400 kW/0.44 MHz为例,电网与电气设备的耦合仿真是一项非常复杂的任务,因为网络与设备之间的频率比很大(超过8000倍),导致计算时间显着增加。同时,耦合仿真能全面准确地反映网络中谐波的产生情况。但发电机高频电气部分的电磁过程在40-100 /spl mu/s的时间范围内具有稳态值。此外,高频发生器包含低频滤波元件,防止高频谐波(0.44 MHz及以上)在网络中的渗透,并允许以良好的精度定义网络谐波的水平。综述了网络发生器系统的不同频率特性,并与时域研究进行了比较。
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