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首页> 外文期刊>Power Electronics, IEEE Transactions on >Dynamic and Balanced Control of Three-Phase High-Power Dual-Active Bridge DC–DC Converters in DC-Grid Applications
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Dynamic and Balanced Control of Three-Phase High-Power Dual-Active Bridge DC–DC Converters in DC-Grid Applications

机译:直流电网应用中三相大功率双有源桥式DC-DC转换器的动态和平衡控制

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The three-phase dual-active bridge (DAB) is a dc–dc converter, which provides galvanic isolation, inherent soft-switching capability, and small filter size. In this study, the dynamic behavior of three-phase DAB is analyzed and a dynamic control strategy is developed. Furthermore, a compensation technique is implemented to compensate unbalanced transformer phase currents. The latter is often caused by asymmetric leakage inductances. State space averaging and first harmonic approximation models, both for the steady state and transient analysis, are developed to describe the dynamic behavior of the three-phase DAB. The accuracy of the models is compared with a detailed circuit simulation and the benefits of each model are identified. When the transferred power of the DAB changes fast, the transformer currents can become unbalanced, leading to oscillations in the output current. A unique control method is presented, which allows settling of the transformer currents within one-third of the switching period. Additionally, the transformer currents stay symmetrical and oscillations are avoided. Based on this fast current control, an outer voltage controller is designed. The comparison of the control system using the fast current control and the conventional quasi-steady-state control demonstrates the potential advantages of the new approach under dynamic conditions. In practice, it is difficult to achieve completely symmetrical short-circuit impedances in a high-power medium-voltage transformer. Asymmetric leakage inductances, however, result in unbalanced phase currents and higher dc current ripple in a three-phase DAB. The new control scheme that is developed here can be extended to compensate any unbalances in the transformer. This approach enables effectively the balancing of the three-phase currents. The new control schemes are experimentally verified.
机译:三相双有源桥(DAB)是一个DC-DC转换器,可提供电流隔离,固有的软开关功能和较小的滤波器尺寸。在这项研究中,分析了三相DAB的动态行为并制定了动态控制策略。此外,实施补偿技术以补偿不平衡的变压器相电流。后者通常是由不对称的漏感引起的。开发了用于稳态和瞬态分析的状态空间平均和一次谐波近似模型,以描述三相DAB的动态行为。将模型的准确性与详细的电路仿真进行比较,并确定每个模型的好处。当DAB的传输功率快速变化时,变压器电流可能变得不平衡,从而导致输出电流振荡。提出了一种独特的控制方法,该方法允许在开关周期的三分之一内稳定变压器电流。此外,变压器电流保持对称,避免了振荡。基于这种快速电流控制,设计了外部电压控制器。使用快速电流控制和常规准稳态控制的控制系统的比较证明了这种新方法在动态条件下的潜在优势。实际上,在大功率中压变压器中很难获得完全对称的短路阻抗。但是,不对称的漏感会导致三相DAB中的相电流不平衡和更高的直流电流纹波。此处开发的新控制方案可以扩展以补偿变压器中的任何不平衡。这种方法可以有效地平衡三相电流。新的控制方案已通过实验验证。

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