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Resonant Point Analysis of Generalized CLLC-Type DC Transformer in the Hybrid AC/DC Microgrid

机译:交/直流微电网中通用CLLC型直流变压器的谐振点分析

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The CLLC-type resonant DC Transformer (simplified as DCT) has been proposed in the coexisting hybrid AC/DC microgrid to substitute the traditional bulky line-frequency AC transformer. It can ensure the bus voltage matching and galvanic isolation as the high-frequency operating condition, high power-density as well as the adjustable characteristics. However, it is worthy pointing out that the hybrid AC/DC microgrid is a special application, which often poses a series of specific challenges to the DCT design, such as the transmission power features, efficiency, etc., which largely depend on the deviation between the switching and resonant frequency. Therefore, the resonant point of the CLLC-type resonant DCT is analyzed to guide its future parameters design in the hybrid AC/DC microgrid. Based on the system description, the equivalent mathematic model of the CLLC-type DCT is established to derive the resonant point number under various load conditions by minimizing the reactive power. An example is given with the simulation results to verify the theoretical analysis. Lab-scale CLLC-type DCT prototype has been developed for experimental verifications.
机译:已经在共存的混合AC / DC微电网中提出了CLLC型谐振DC变压器(简化为DCT),以替代传统的笨重的线频AC变压器。它可以确保总线电压匹配和电流隔离,因为它的高频工作条件,高功率密度以及可调特性。但是,值得指出的是,交流/直流混合微电网是一种特殊的应用,通常会对DCT设计提出一系列特定的挑战,例如传输功率特性,效率等,这在很大程度上取决于偏差。在开关频率和谐振频率之间。因此,分析了CLLC型谐振DCT的谐振点,以指导其将来在交/直流微电网中的参数设计。基于系统描述,建立了CLLC型DCT的等效数学模型,以通过最小化无功功率来推导各种负载条件下的谐振点数。给出了仿真结果的例子,以验证理论分析。实验室规模的CLLC型DCT原型已经开发用于实验验证。

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