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PWM control of electronic ballast for high-pressure Na lamps in comparison to fluorescent lamps. Introduction to quasi-optimum control

机译:荧光灯与荧光灯相比,高压NA灯的电子镇流器PWM控制。准优选控制介绍

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The design of electronic ballasts to drive high and low-pressure lamps should fulfil both the high-voltage necessities for the start-up and the current limiting requirements in steady-state operation. The full-bridge parallel resonant power converter reduces the current stress compared to the half-bridge power converter, so it is presented as a solution to drive lamps over 100 W. The analysis of the full-bridge control based on pulsewidth modulation is presented for HPS and fluorescent lamps. As the inverter input voltage is usually quite high compared to the lamp voltage requirements in steady-state operation, the quality factor of the resonant tank is low, resulting in an appreciable level of reactive current. The PWM dimming control at fixed frequency is proposed when the total current level is acceptable. In this case, while maintaining the transistors' turn-on at zero voltage, the PWM control improves the power converter efficiency by reducing the reactive current. When the reactive current causes an important efficiency reduction, a quasi-optimum control method is proposed that consists of fixing, at each control point, the frequency vs. duty-cycle relation that minimizes the reactive current while maintaining soft turn-on.
机译:驾驶高压灯和低压灯的电子镇流器的设计应满足启动的高压必要性以及稳态操作中的电流限制要求。与半桥电源转换器相比,全桥并联谐振功率转换器降低了电流应力,因此呈现为驾驶灯以上的灯具以上的解决方案。介绍了基于脉冲宽度调制的全桥控制的分析HPS和荧光灯。由于逆变器输入电压与稳态操作中的灯电压要求相比非常高,因此谐振槽的质量因数低,导致可明显的反应电流水平。当总电流水平可接受时,提出了固定频率的PWM调光控制。在这种情况下,在保持晶体管的导通处于零电压的同时,通过降低反应电流来提高功率转换器效率。当反应电流导致重要的效率降低时,提出了一种由固定在每个控制点,频率与占空比关系组成的准优化控制方法,其在保持电动开启时最小化反应电流的频率与占空比关系。

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