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首页> 外文期刊>Power Electronics, IET >Design optimisation of the LCsCp resonant inverter to drive 1 kW high-pressure sodium lamps
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Design optimisation of the LCsCp resonant inverter to drive 1 kW high-pressure sodium lamps

机译:用于驱动1 kW高压钠灯的LCsCp谐振逆变器的设计优化

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摘要

A novel design optimisation for the half-bridge series??parallel (LCsCp) resonant inverter used for high-power highpressure sodium (HPS) lamp electronic ballasts is presented. A series of analyses and calculations are presented to obtain the ideal values of input DC voltage and resonant components meeting the requirement of approximate zero current switching (ZCS) behaviour over the lamp lifetime, ensuring the optimal design with minimised switching and conduction losses at steady-state operation. A new combined power control method is fulfilled to maintain the desired maximum lamp power under the optimal input voltage. Corresponding illustrations are provided to confirm the analysis result. The developed design optimisation method has been implemented into a 1 kW LCsCp resonant inverter prototype. The measured efficiency is about 98.1% for a new lamp and 99% for an ageing lamp.
机译:提出了一种用于大功率高压钠(HPS)灯电子镇流器的半桥串联并联(LCsCp)谐振逆变器的新型设计优化方法。提出了一系列分析和计算方法,以获得输入直流电压和谐振组件的理想值,以满足在灯的整个使用寿命内近似零电流开关(ZCS)行为的要求,从而确保最佳设计,并在稳态下将开关和传导损耗降至最低状态操作。实现了一种新的组合功率控制方法,以在最佳输入电压下保持所需的最大灯功率。提供相应的插图以确认分析结果。已开发的设计优化方法已应用于1 kW LCsCp谐振逆变器原型中。对于新灯泡,测得的效率约为98.1%,对于老化的灯泡,测得的效率约为99%。

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