Reducing the Harmonics Level in a Three-Level Single-Phase Autonomous Inverter without Pulse-Width Modulation

Q3 Engineering
N. I. Shchurov, S. V. Myatezh, P. S. Lisitsyn, E. Yu. Abramov, R. N. Latyshev
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引用次数: 0

Abstract

An autonomous multilevel single-phase inverter with no applied pulse-width modulation (PWM) and capacitive voltage dividers, the output voltage curve of which is close to a sine-wave shape and corresponds to the contemporary standards of electrical energy quality for 0.38-kV networks is considered. As compared with inverters with the use of PWM, the proposed inverter, owing to the use of low switching frequencies for power semiconductors at a level of the industrial frequency of 50 Hz and due to the optimal use of different-level amplitudes, should not generate significant electromagnetic interference and not cause accelerated wear in the insulation of connected equipment. Studies that have been performed with mathematical and physical models have demonstrated the potentiality of obtaining a voltage with a permissible harmonic coefficient at a level of KHU amounting to about 6.36% for 0.38-kV networks with the use of a three-level autonomous inverter constructed based on a three-core magnetic circuit of the transformer with a passive LC filter containing a sequential resonant circuit.

Abstract Image

降低无脉宽调制三电平单相自主逆变器中的谐波水平
摘要 研究了一种不使用脉宽调制(PWM)和电容分压器的自主多电平单相逆变器,其输出电压曲线接近正弦波形,符合 0.38 千伏电网的现代电能质量标准。与使用 PWM 的逆变器相比,拟议的逆变器由于在 50 Hz 工业频率水平上使用了较低的功率半导体开关频率,并优化了不同电平振幅的使用,因此不会产生明显的电磁干扰,也不会导致连接设备的绝缘加速磨损。利用数学和物理模型进行的研究表明,在 0.38 千伏电网中,通过使用基于变压器三芯磁路的三电平自主逆变器,以及包含顺序谐振电路的无源 LC 滤波器,可以获得 KHU 值约为 6.36% 的允许谐波系数电压。
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来源期刊
Russian Electrical Engineering
Russian Electrical Engineering Engineering-Electrical and Electronic Engineering
CiteScore
1.50
自引率
0.00%
发文量
70
期刊介绍: Russian Electrical Engineering  is a journal designed for the electrical engineering industry and publishes the latest research results on the design and utilization of new types of equipment for that industry and on the ways of improving the efficiency of existing equipment.
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