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引用次数: 1
摘要
本文在MATLAB SIMULINK编程环境下,对微波发生器用单相磁控管三相高压电源进行了优化设计。该电源的设计是由三个π四倍模型等效的带磁分流的三相高压互感器组成,每个模型为6个电池倍频器供电,倍频器由电容器、二极管和每个电池输出端的一个磁控管组成。变压器的每个π等效模型由三个电感元件组成;每个元件的特点是磁通和电流之间的非线性关系。利用MATLAB SIMULINK代码对该模型进行了测试。接下来,我们将采用优化策略,旨在减少变压器的体积,同时尊重磁控管制造商推荐的条件:Ipeak<;1.2 A, Imean≈300 mA。这导致降低变压器成本,并因此,所有的安装,使其更加经济。
Optimization under Matlab Simulink code of a three-phase HV power transformer for microwaves generators supplying one magnetron by phase
This work treat the optimization of a three-phase high voltage power supply for microwaves generators with one magnetron by phase under MATLAB SIMULINK code. The design of this power supply is composed of three π quadruple models equivalents of three-phase high voltage transformer with magnetic shunt, each one powering o cell doublers composed of capacitor and a diode and one magnetron at the output of each cell. Each π equivalent model of the transformer is composed of three inductive elements; each element is characterized by a non linear relation between flux and current. This model was tested with the help of MATLAB SIMULINK code. Following that, we will apply an optimization strategy that aims to reduce the volume of the transformer while respecting the conditions recommended by the manufacturer of magnetron: Ipeak<;1.2 A, Imean≈ 300 mA. This leads to reduce the transformer cost, and, therefore, that of all the installation and make it more economical.