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Analysis and design of full-bridge Class-DE inverter at fixed duty cycle

机译:固定占空比全桥DE类逆变器的分析与设计

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This paper presents the following for a full-bridge Class-DE resonant inverter operating at a fixed duty ratio: (a) steady-state analysis using first-harmonic approximation and (b) derivation of closed-form expressions for the currents, voltages, and powers. The conversion from a series-parallel resonant network to a series resonant network is presented. Imposing the zero-voltage and zero-derivative switching conditions, the expression for a shunt capacitance across the MOSFETs in the inverter bridge is derived. The closed-form expressions to calculate the values of the resonant components are presented. A practical design of a Class-DE resonant inverter supplied by a dc input voltage of 230 V, delivering an output power of 920 W, and operating at a switching frequency of 100 kHz is considered and its design methodology is included. Theoretical results are validated by Saber simulations.
机译:本文介绍了以固定占空比运行的全桥DE型谐振逆变器的以下内容:(a)使用一阶谐波近似进行稳态分析,以及(b)推导电流,电压,和权力。提出了从串联-并联谐振网络到串联谐振网络的转换。通过施加零电压和零导数开关条件,可以得出逆变器电桥中MOSFET两端并联电容的表达式。给出了用于计算谐振分量值的闭式表达式。考虑了由230 V的直流输入电压提供,输出920 W的输出功率并以100 kHz的开关频率工作的DE类谐振逆变器的实用设计,并包括其设计方法。理论结果通过Saber仿真得到验证。

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