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A Dual-Bridge DC–DC Resonant Converter Using Extended PWM and Phase-Shift Control

机译:双桥DC-DC谐振转换器,使用扩展PWM和相移控制

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摘要

To enhance the overall efficiency of a dual-bridge resonant converter, a new asymmetric pulsewidth modulation (PWM) control named extended pulsewidth modulation (EPWM) with both variable pulsewidth and variable symmetry is introduced in this article, which is applied to the high-voltage-side bridge of the converter and is combined with phase-shift control to form a 3-D gating scheme. A specified control strategy based on the 3-D gating scheme is then derived for the purpose of minimum tank current operation. Thanks to the flexibility brought by EPWM, full zero-voltage switching (ZVS) operation range is maintained as large as that of a conventional PWM-based minimum current trajectory, and only one switch loses ZVS at light load. The modulated voltage pulsewidth is kept at high level in a wide load range, which compromises the by-effect of high-order harmonics due to asymmetric modulation. Besides, the backflow power on both sides is almost minimized naturally. Therefore, the proposed control trajectory can have better performance in a light-load region than previous reported solutions. Experimental results prove the accuracy and effectiveness of the proposed minimum current operation with wide ZVS range and show the improvement of overall conversion efficiency.
机译:为了提高双桥谐振转换器的整体效率,命名为新的非对称脉冲宽度调制(PWM)控制扩展脉冲宽度调制(EPWM)与两个可变脉冲宽度和可变对称本文中,其被施加到高电压在被引入转换器侧的桥,并与移相控制,以形成3-d选通方案相结合。然后,基于3-d门控方案A中规定控制策略导出最小罐当前操作的目的。由于由EPWM带来灵活性,全零电压开关(ZVS)的操作范围被维持那样大的常规基于PWM的最小电流轨迹的,只有一个开关在轻负载失去ZVS。经调制的电压脉冲宽度保持在在宽的负载范围内,这会危及到副作用的高次谐波引起的非对称调制高电平。此外,双方的回流功率几乎是自然最小化。因此,建议控制轨迹可以在比以前报告的解决方案的轻负载区域更好的性能。实验结果证明了该最小电流操作的准确性和有效性具有宽范围ZVS和显示的总转换效率的提高。

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