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An Energy-Based Analysis for High Voltage Low Power Flyback Converter Feeding Capacitive Load

机译:高压低功率反激转换器馈入电容负载的基于能量的分析

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Generally, battery-fed capacitive loads are charged to high voltages in series of switching cycles with smaller fragments of energy delivered to the load in every cycle to ensure an efficient charging process. In high voltage low power (HVLP) flyback charging circuit, significant portion of input energy drawn from the source in a cycle is utilized by the effective parasitic capacitance of the HV transformer and semiconductor devices and circulated back to the source at the end of the cycle. This reduces the energy delivered to the load per cycle and hence the net energy delivered in the charging process. In this paper, an energy-based analysis and simplified energy-based model for HVLP charging circuits is derived. An energy-based approach is appropriate to describe and define the HVLP converter behavior in terms of load energy component and circulating energy component. The derived energy-based model is extended to obtain analytical closed-form expressions governing the essential parameters of the charging circuit. The proposed energy-basedmodel and analytical formulation of essential parameters are experimentally validated on a 0-2.5 kV programmable high voltage charging circuit prototype fed from 12 V input battery source.
机译:通常,电池供电的电容性负载在一系列开关周期中被充电至高电压,在每个周期中传递给负载的能量碎片较小,以确保高效的充电过程。在高压低功率(HVLP)反激式充电电路中,在一个周期内从电源汲取的大部分输入能量被HV变压器和半导体器件的有效寄生电容利用,并在周期结束时循环回到电源。这减少了每个周期传递给负载的能量,从而降低了充电过程中传递的净能量。本文推导了基于能量的分析和简化的基于能量的HVLP充电电路模型。基于能量的方法适合根据负载能量分量和循环能量分量来描述和定义HVLP转换器的行为。扩展导出的基于能量的模型,以获得控制充电电路基本参数的解析闭合形式表达式。在基于12 V输入电池电源的0-2.5 kV可编程高压充电电路原型上,对所提出的基于能量的模型和基本参数的分析公式进行了实验验证。

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