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Microcontroller-Based High-Power-Factor Electronic Ballast to Supply Metal Halide Lamps

机译:基于微控制器的高功率因数电子镇流器,可提供金属卤化物灯

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摘要

The analysis, design, and implementation of a microcontroller-based electronic ballast to supply metal halide (MH) lamps are presented. The proposed topology is based on the integration of the buck and flyback converters, the former providing power factor correction and the latter controlling lamp power. The lamp is supplied by a low-frequency square-waveform current, which is a convenient way to avoid acoustic resonances in high-intensity discharge lamps. Both converters operate in discontinuous conduction mode, thus allowing the use of only one high-frequency switch and simplifying the control. The electronic ballast is digitally controlled by using a low-cost microcontroller PIC16F684. The microcontroller performs all the necessary tasks during starting, warming-up, and steady state, including closed-loop control of lamp current and protections. The closed-loop control takes into account the lamp dynamical impedance. Experimental results for a 35-W MH lamp are presented, and the obtained overall efficiency is 90%.
机译:介绍了基于微控制器的电子镇流器以供应金属卤化物(MH)灯的分析,设计和实现。提出的拓扑基于降压和反激转换器的集成,前者提供功率因数校正,而后者控制灯功率。灯由低频方波电流供电,这是避免高强度放电灯中声共振的便捷方法。两个转换器均以不连续导通模式工作,因此仅允许使用一个高频开关,从而简化了控制。电子镇流器通过使用低成本微控制器PIC16F684进行数字控制。微控制器在启动,预热和稳定状态期间执行所有必要的任务,包括对灯电流和保护的闭环控制。闭环控制考虑了灯的动态阻抗。给出了35 W MH灯的实验结果,获得的总效率为90%。

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