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A New Power Supply To Ignite And Sustain Plasma In A Reactive Gas Generator

机译:一种新的电源,以在反应气体发生器中点燃和维持等离子体

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This paper proposes new method of providing power for igniting plasma in a toroidal reactive gas generator. Advantages of this method include simplicity of control and prevention of damage to power supply semiconductor devices. The method combines a parallel loaded capacitor series resonant topology with a wide dynamic range control. First, the proposed parallel-loaded capacitance resonant inverter replaces the more commonly used power circuit having the plasma load in parallel with the inductance. Next, the state of the art pulse-width modulated (PWM) controller is replaced by a control combining combine pulse-frequency modulation (PFM) and PWM. Implementation includes an intelligent over current protection circuit. The combination provides a robust excitation for plasma loads making rapid transitions between extremes of impedance, and achieves superior dynamic range and stability to successfully ignite, sustain, and stabilize the plasma during operation. Simulation and lab experimental results are presented and compared with a standard a 6.5kW plasma power supply.
机译:本文提出了用于在环形反应气体发生器中点燃等离子体提供电力的新方法。该方法的优点包括控制和防止对电源半导体器件的损坏的简单性。该方法将并联加载的电容器串联谐振拓扑与宽动态范围控制相结合。首先,所提出的平行加载电容谐振逆变器取代了与电感平行的等离子体负载的更常用的电源电路。接下来,通过控制组合组合脉冲 - 频调制(PFM)和PWM的控制代替所公开的脉冲宽度调制(PWM)控制器的状态。实现包括智能电流保护电路。该组合为等离子体负载提供了一种稳健的激发,使阻抗极端之间的快速过渡,并且在操作期间实现了成功点燃,维持和稳定等离子体的卓越动态范围和稳定性。仿真和实验室实验结果与标准的6.5kW等离子体电源进行了展示。

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