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Improved Instantaneous Current Control for High-Power Three-Phase Dual-Active Bridge DC–DC Converters

机译:用于大功率三相双有源桥式DC-DC转换器的改进的瞬时电流控制

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摘要

With the increasing share of renewable and decentralized power sources, the need for power electronics and especially for efficient high-frequency high-power dc–dc converters is expected to grow. The three-phase dual-active bridge is a promising technology, as it has a high-power density and inherently features galvanic isolation. A highly dynamic method to control the current and thus the transferred power for this converter type has recently been published. The published approach is easy to implement and gives excellent results for transformers with a high transient time constant, i.e., low winding resistance. However, the method can be improved for transformers with increased winding resistance. This paper suggests two approaches that reach steady state in one-third of a switching period and half a switching period, respectively. Independent of the winding resistance, the suggested control schemes give superior results and oscillations of the dc current are completely eliminated. The control schemes are investigated in detail and derived mathematically. These exact solutions are linearized for ease of implementation in digital control circuitry. Simulations and an experimental verification on a laboratory prototype confirm the outstanding performance of the developed approach.
机译:随着可再生和分散式电源的份额不断增加,对电力电子设备,特别是对高效高频大功率dc-dc转换器的需求预计将增长。三相双有源桥是一项有前途的技术,因为它具有高功率密度,并且固有具有电流隔离功能。最近已经发布了一种高度动态的方法来控制电流,从而控制这种转换器类型的传输功率。对于具有高瞬态时间常数(即低绕组电阻)的变压器,该公开的方法易于实施并且给出了极好的结果。但是,对于绕组电阻增加的变压器,可以改进该方法。本文提出了两种分别在开关周期的三分之一和开关周期的一半内达到稳态的方法。与绕组电阻无关,建议的控制方案可提供出色的结果,并且完全消除了直流电流的振荡。详细研究了控制方案并通过数学推导得出。这些精确的解决方案经过线性化处理,易于在数字控制电路中实施。对实验室原型的仿真和实验验证证实了所开发方法的出色性能。

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