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Modeling of New Three-Phase High Voltage Power Supply For Industrial Microwave Generators With One Magnetron Per Phase

机译:每相一个磁控管的工业微波发生器新型三相高压电源的建模

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This original work treats the feasibility study of a new HV power supply with a three-phase character, supplying a magnetron 800 Watts-2450 MHz per phase, for industrial microwave generators from the modeling with the EMTP code of a single-phase HV power supply for one magnetron. The exploitation of the modeling, with EMTP code, of the power system for one magnetron is to use, essentially, the developed model of its transformer, which is a π quadruple, consisting of saturable inductances able to translate the non-linear phenomena of saturation, while guaranteeing the stabilization process of the magnetron current. Using the new power supply device with a three-phase character and the EMTP code, the feasibility study, in nominal mode, of the three-phase power supply was performed satisfactory. The analysis of the results obtained helped to confirm the possibility of functioning of this new system without interaction between magnetrons, which provides, relative to the current device, gains of size, volume, cost of implementation and maintenance and makes this new system more economical, while guaranteeing the regulation process of the current in each magnetron.DOI:http://dx.doi.org/10.11591/ijece.v3i2.2409.
机译:这项原始工作处理了具有三相特性的新型高压电源的可行性研究,该三相高压电源每相可提供800瓦-2450 MHz的磁控管,用于通过单相高压电源的EMTP代码进行建模的工业微波发生器一个磁控管。一个磁控管电源系统的建模和EMTP代码的开发,实质上是使用其变压器的开发模型,该模型是π的四倍,由能够转化非线性饱和现象的饱和电感组成。 ,同时保证了磁控管电流的稳定过程。使用具有三相特性和EMTP代码的新型电源设备,在标称模式下对三相电源的可行性研究令人满意。对获得的结果进行的分析有助于确认这种新系统在磁控管之间没有相互作用的情况下运行的可能性,相对于当前设备而言,这带来了尺寸,体积,实施和维护成本的增加,并使该新系统更加经济,同时确保每个磁控管中电流的调节过程。DOI:http://dx.doi.org/10.11591/ijece.v3i2.2409。

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