A New Driving Method for a Magnetron Using A Soft Switching Active Clamp Fly-back Converter

Abolfazl Nasiri, Ali Saadat Saadat Abadi
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引用次数: 4

Abstract

This paper presents a resonant active clamp flyback converter 1.6kW (4k V, 0.4 A) for driving a Magnetron for the sulfur plasma lamp. A magnetron is a vacuum lamp which works as a self-exciting microwave oscillator. In the presented paper, a high gain boost fly-back converter is used to achieve the High Voltage Power Supply (HVPS). An active clamp topology is utilized to decrease the main switch stress. Also a phase-shifted technique is proposed to reduce the maximum flux density of the transformer core. In addition, using the series-resonance circuit has provided the condition of soft switching. The power supply, depending on the required power, can control the peak and average power in minimum-loss condition. The instantaneous power of a microwave is 1600 W and its average power is 200-400 W, which is controlled according to on-state times of the converter. Other advantages of the proposed design are the simplicity of the power circuit, reduction in the number of switching elements, the leakage inductance of the power transformer, and switching losses. The design results have been simulated and verified through the PSIM software.
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软开关有源箝位反激变换器驱动磁控管的新方法
本文提出了一种1.6kW (4k V, 0.4 a)的谐振有源箝位反激变换器,用于驱动硫等离子体灯磁控管。磁控管是一种作为自激微波振荡器的真空灯。本文采用一种高增益升压反激变换器来实现高压电源。利用有源钳位拓扑减小主开关应力。同时提出了一种相移技术来降低变压器铁心的最大磁通密度。此外,采用串联谐振电路为软开关提供了条件。该电源根据所需功率,可在最小损耗条件下控制峰值和平均功率。微波的瞬时功率为1600 W,平均功率为200 ~ 400 W,根据变换器的导通次数进行控制。所提出的设计的其他优点是电源电路的简单性,开关元件的数量减少,电源变压器的漏感和开关损耗。通过PSIM软件对设计结果进行了仿真验证。
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