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Steady-state analysis and simulation of a BJT self-oscillating ZVS-CV ballast driven by a saturable transformer

机译:饱和变压器驱动的BJT自激ZVS-CV镇流器的稳态分析和仿真

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摘要

The steady-state oscillation of a zero-voltage-switching clamped-voltage self-oscillating ballast driven by a saturable transformer is analyzed and simulated. Its self-oscillating operation is divided into six stages according to the hysteresis B-H loop of saturable transformer cores. Stage-wise circuit analysis shows the saturable transformer limits the lamp current and dominates the switching frequency of the ballast. The saturating behavior of driving and switching devices clearly distinguishes this self-oscillating inverter from an external-drive high-quality-factor resonant inverter. Analytical results are verified by mathematical simulation and laboratory experiment.
机译:对饱和变压器驱动的零电压钳位电压自激镇流器的稳态振荡进行了分析和仿真。根据可饱和变压器芯的磁滞B-H回路,其自激工作分为六个阶段。分阶段电路分析表明,可饱和变压器限制了灯电流,并决定了镇流器的开关频率。驱动和开关设备的饱和特性清楚地将这种自激振荡逆变器与外部驱动的高品质因数谐振逆变器区分开。通过数学模拟和实验室实验验证了分析结果。

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