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Generalized Switch Current Stress Reduction Technique for Coupled-Inductor-Based Single-Switch High Step-Up Boost Converter

机译:基于耦合电感的单开关高升压升压转换器的广义开关电流应力减少技术

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摘要

Coupled-inductor-based boost converters suffer from high switch current stress in steady state and transient due to less self-inductance value in their winding. In this article, a generalized switch current stress reduction technique is proposed by modifying circuit topology of coupled-inductor-based high step-up boost converter (CIHBC). This is achieved by a half-cycle resonating branch utilizing inductance of coupled inductor. Furthermore, applying the concept, a coupled inductor boost converter is proposed for achieving high step-up ratio with low switch current and voltage stress. The operation of the proposed converter using a resonating branch is discussed in both continuous and discontinuous conduction modes. The theoretical findings are verified through a simulation study in PSIM 9.1.1. A prototype converter of 100-W output power is designed to prove the concept and for performance analysis of the proposed converter.
机译:基于耦合电感的升压转换器由于在绕组中的自感觉值较小而受到稳态和瞬态的高开关电流应力。在本文中,通过修改基于电感的高升压升压转换器(CIHBC)的电路拓扑来提出广义开关电流应力降低技术。这是通过利用耦合电感器的电感来实现的半周期谐振分支实现。此外,提出应用概念耦合电感器升压转换器,用于实现具有低开关电流和电压应力的高升压比。使用谐振分支的所提出的转换器的操作以连续和不连续的传导模式讨论。通过PSIM 9.1.1的仿真研究验证了理论发现。 100 W输出功率的原型转换器旨在证明所提出的转换器的概念和性能分析。

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