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Analysis and design of a series resonant converter with constant current input and regulated output current

机译:具有恒定电流输入和稳定输出电流的串联谐振变换器的分析与设计

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摘要

Constant current dc distribution to series connected loads has been preferred for long distance high reliability systems such as undersea cabling for telecommunications and observation networks. In addition, some loads require constant current output, creating a need for high efficiency power supplies that provide a regulated current gain from input current to output current. Series resonant converters (SRCs) are a good candidate with the potential for high output impedance current source output behavior. However, SRCs behave differently with constant current input compared to traditional constant voltage input, a behavior that has not been well studied in the literature. This work presents detailed analysis and design considerations for SRCs operated with constant current input and regulated to provide a constant current output. The converter control method, zero-voltage-switching (ZVS) realization, and approaches to maintain SRC operation at resonance are discussed. The current source property of the SRC offers many advantages such as independence of load voltage, parallel operation and short circuit output protection. Hardware results are presented for a 380 kHz, 450 W prototype SRC with 1 A input current and 0.33 A regulated output current.
机译:对于长距离高可靠性系统(例如,用于电信和观察网络的海底电缆),首选将恒定电流dc分配给串联连接的负载。另外,某些负载需要恒定电流输出,因此需要提供从输入电流到输出电流的可调节电流增益的高效电源。串联谐振转换器(SRC)具有高输出阻抗,电流源输出特性的潜力。但是,与传统的恒定电压输入相比,SRC在恒定电流输入下的行为有所不同,这一行为在文献中尚未得到很好的研究。这项工作提出了对于采用恒定电流输入并经过调节以提供恒定电流输出的SRC的详细分析和设计注意事项。讨论了转换器控制方法,零电压开关(ZVS)实现以及在谐振时保持SRC操作的方法。 SRC的电流源特性具有许多优点,例如负载电压的独立性,并联运行和短路输出保护。给出了具有1 A输入电流和0.33 A稳定输出电流的380 kHz,450 W原型SRC的硬件结果。

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