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Steady-State and Transient DC Magnetic Flux Bias Suppression Methods for a Dual Active Bridge Converter

机译:双功动桥转换器的稳态和瞬态直流磁通偏置抑制方法

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This article presents dc magnetic flux bias suppression methods for a dual active bridge (DAB) converter in both steady state and transient process. The steady-state dc offset is caused by asymmetries of the circuit and power switches in practice, while the transient offset is caused by the sudden update of phase shift ratio. This dc bias will increase the conduction losses, lead to loss of zero voltage switching (ZVS), and even saturate the magnetic components. To prevent this risk, this article proposes methods to suppress the dc bias both in steady state and transient process. For steady-state dc bias suppression, the duty cycles of square voltages generated by the primary and secondary side H-bridges are regulated according to the dc bias current. The conditions to achieve zero dc bias and the small-signal model to regulate the dc bias current are derived. For transient dc bias suppression, the phase shift ratio variation is limited to ensure the peak inductor current within the safe operating range. Tunnel magnetoresistance (TMR) is employed to sense the currents, and an analog integration and sampling method is proposed to detect dc bias. Finally, the proposed method is verified through experimental results on a 3200-W DAB prototype.
机译:本文介绍了在稳态和瞬态过程中为双极电桥(DAB)转换器的直流磁通偏置抑制方法。稳态DC偏移是由电路和电源开关的不对称引起的,而瞬态偏移是由相移率的突然更新引起的。该直流偏置将增加导通损耗,导致零电压切换(ZVS)损耗,甚至均匀饱和磁性元件。为了防止这种风险,本文提出了在稳定状态和瞬态过程中抑制DC偏差的方法。对于稳态DC偏置抑制,根据DC偏置电流调节由主侧H桥产生的方形电压的占空比的占空比。衍生出零DC偏置的条件和用于调节DC偏置电流的小信号模型。对于瞬态DC偏置抑制,相移率变化限制为确保安全操作范围内的峰电感电流。采用隧道磁阻(TMR)来感测电流,并提出了模拟集成和采样方法来检测直流偏置。最后,通过3200W DAB原型的实验结果验证所提出的方法。

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