会议论文详细信息
International Conference on Information Technologies in Business and Industry 2016
Research on Stabilization Properties of Inductive-Capacitive Transducers Based on Hybrid Electromagnetic Elements
计算机科学;经济学;工业技术
Konesev, S.G.^1 ; Khazieva, R.T.^1 ; Kirllov, R.V.^1 ; Konev, A.A.^1
Ufa State Petroleum Technological University, 1, Kosmonavtov Ave., Ufa
450062, Russia^1
关键词: Capacitive transducers;    Constant Power Consumption;    Current stabilization;    Electromagnetic components;    Electromagnetic process;    Electrothermal systems;    Resonance frequencies;    Stabilization property;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/803/1/012076/pdf
DOI  :  10.1088/1742-6596/803/1/012076
来源: IOP
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【 摘 要 】

Some electrical consumers (the charge system of storage capacitor, powerful pulse generators, electrothermal systems, gas-discharge lamps, electric ovens, plasma torches) require constant power consumption, while their resistance changes in the limited range. Current stabilization systems (CSS) with inductive-capacitive transducers (ICT) provide constant power, when the load resistance changes over a wide range and increase the efficiency of high-power loads' power supplies. ICT elements are selected according to the maximum load, which leads to exceeding a predetermined value of capacity. The paper suggests carrying load power by the ICT based on multifunction integrated electromagnetic components (MIEC) to reduce the predetermined capacity of ICT elements and CSS weights and dimensions. The authors developed and patented ICT based on MIEC that reduces the CSS weights and dimensions by reducing components number with the possibility of device's electric energy transformation and resonance frequency changing. An ICT mathematical model was produced. The model determines the width of the load stabilization range. Electromagnetic processes study model was built with the MIEC integral parameters (full inductance of the electrical lead, total capacity, current of electrical lead). It shows independence of the load current from the load resistance for different ways of MIEC connection.

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