Abstract:This work deals with the modeling of a new three-phase tetrahedral transformer of HV power supply, which feeds three magnetrons per phase. The design of this new power supply is composed of three single-phase with magnetic shunt transformers coupling in star; each one is size to feed voltagedoubling cells, thereby feeds a magnetron. In order to validate the functionality of this power supply, we simulate it under Matlab-Simulink environment. Thus, we modeled nonlinear inductance using a new approach of neuro-f… Show more
“…Fig. 4 and 5 give the different currents/voltages curves of magnetrons, diodes, capacitors and transformer secondary obtained in a previously study [4]. These curves will be the comparison tool between the optimized and non-optimized power supplies.…”
Section: B Simulation Of the Modelmentioning
confidence: 98%
“…Unlike conventional transformers, this special transformer contains intermediate magnetic shunts between the side columns and the central column, which allows to ensure the stabilization of the current in the magnetrons by the saturation of its magnetic circuit. From the different electrical and magnetic equations already developed of this transformer [4], each phase is modeled as a quadruple in π, composed of three non-linear inductances on the primary, secondary and shunts sides. These inductances have a section S, a length ℓ and a characteristic which can be determined from the relation and also the curve B(H) of the material transformer [6] [7].…”
Section: A Description and Modeling Of Power Supplymentioning
confidence: 99%
“…Unlike the old power supplies already developed, whether single-phase magnetron 800Watts-2450Mhz or three-phase of three magnetrons 2400Whats-2450Mhz [1][2][3]. This new technology of nine magnetrons is optimized compared to that previously developed [4]. It offers an identical microwave power of 7200Watts-2450MHz.…”
This article deals with the optimization of a threephase tetrahedral-type high voltage transformer, sized to supply three voltage-doubling cells and three magnetrons per phase. The optimization method used is based on an algorithm implemented in Matlab/Simulink to study the influence of transformer geometrical parameters on the electrical operation of the power supply. This study will allow to find reduced volume of transformer respecting the current constraints imposed by the magnetrons manufacturer. The choice of optimal solution is done by calculation of magnetrons powers in order to respect the nominal operation.
“…Fig. 4 and 5 give the different currents/voltages curves of magnetrons, diodes, capacitors and transformer secondary obtained in a previously study [4]. These curves will be the comparison tool between the optimized and non-optimized power supplies.…”
Section: B Simulation Of the Modelmentioning
confidence: 98%
“…Unlike conventional transformers, this special transformer contains intermediate magnetic shunts between the side columns and the central column, which allows to ensure the stabilization of the current in the magnetrons by the saturation of its magnetic circuit. From the different electrical and magnetic equations already developed of this transformer [4], each phase is modeled as a quadruple in π, composed of three non-linear inductances on the primary, secondary and shunts sides. These inductances have a section S, a length ℓ and a characteristic which can be determined from the relation and also the curve B(H) of the material transformer [6] [7].…”
Section: A Description and Modeling Of Power Supplymentioning
confidence: 99%
“…Unlike the old power supplies already developed, whether single-phase magnetron 800Watts-2450Mhz or three-phase of three magnetrons 2400Whats-2450Mhz [1][2][3]. This new technology of nine magnetrons is optimized compared to that previously developed [4]. It offers an identical microwave power of 7200Watts-2450MHz.…”
This article deals with the optimization of a threephase tetrahedral-type high voltage transformer, sized to supply three voltage-doubling cells and three magnetrons per phase. The optimization method used is based on an algorithm implemented in Matlab/Simulink to study the influence of transformer geometrical parameters on the electrical operation of the power supply. This study will allow to find reduced volume of transformer respecting the current constraints imposed by the magnetrons manufacturer. The choice of optimal solution is done by calculation of magnetrons powers in order to respect the nominal operation.
“…The aim of this section is to discuss a duo electric-magnetic circuit model of three-phase transformer HV power supply for microwave generators with two magnetrons per phase. The model uses a new shelltype transformer with a magnetic shunt [15][16][17]. Figure 1 presents the geometric shape of the magnetic circuit of this transformer, each phase contains two windings (primary and secondary) placed in the middle limb.…”
Section: Modeling Three-phase Transformer Of the High Voltage Power Smentioning
confidence: 99%
“…The (15), (17) Dividing path (JIHKJ) of an iron core in three partial paths, each of which has a uniform flux, the equation becomes:…”
<p>This paper describes the development and implementation of a digital simulation model of a three-phase transformer relates to shunt core transformer, which used to drive magnetron tubes in the microwave. The focus of this study is based on modeling of a new shell-type of three limbs three-phase transformer. The model uses to feed two magnetrons instead of one magnetron per phase. The proposed model is established on the simultaneous analysis of a duo electromagnetic lumped component equivalent circuit. This latter was implemented in a MATLAB environment under rated conditions. The results obtained from the application of the analytical method are provided results in conformity to the experimental tests in the case of single phase high voltage power supply for one magnetron.</p>
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