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Study of Dual Active Bridge With Modified Modulation Techniques for Reduced Link Current Peak Stress and Harmonics Losses in Magnetics

机译:具有改进调制技术的双极桥研究减少连锁电流峰值应力和磁力谐波损耗的研究

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High-frequency-link power-conversion is gaining popularity in recent days due to reduction of the size and weight of the converters for various applications. The performance of the dual active bridge heavily depends on the nature of modulation strategy used and on the loading conditions. Look-up table (LUT) based output power and output voltage dependent modulation strategies to investigate the peak current stress and harmonics in high-frequency link current is proposed in this article. The modulator is, thus, simple to implement. The peak stress, the harmonics (total demand distortion) in link current, and associated losses due to the proposed techniques are compared in four main cases, namely, first, single-phase shift, second, dual-phase shift, third, triple phase shift, and, fourth, modified phase shift (MPS)-I, -II, and -III. In MPS-I, weighted aggregate of harmonic currents minimization including fundamental component is carried out to achieve the minimum conduction losses in the magnetic elements. The same method is extended for minimizing the peak-to-peak ripple in the link current as MPS-II. In MPS-III, the desired total demand distortion in the ac-link current is enforced. The variation of voltage transfer ratio between input and output is taken into consideration using two-dimensional (2-D) LUT. Moreover, the requirement of 2-D LUTs are eliminated by using suitable curve-fitting exercise for the output load voltage variation and 1-D LUTs of coefficients. A detailed simulation study, associated mathematical analysis of the methods adopted and experimental verification are presented from 1 kW prototype.
机译:最近几天的高频连杆电力转换是由于转换器的尺寸和重量进行各种应用而获得普及。双极主动桥的性能大大取决于所使用的调制策略的性质和负载条件。在本文中提出了基于查找表(LUT)的输出功率和输出电压依赖性调制策略,以研究高频链路电流中的峰值电流应力和谐波。因此,调制器易于实现。在四个主要情况下比较了连杆电流的峰值压力,链路电流的谐波(总需求失真)和相关损耗,即,第一,单相移,二,双相移,第三,三相Shift,以及第四,修改的相移(MPS)-i,-ii和-iii。在MPS-I中,进行包括基本组分的谐波电流的加权集合,以实现磁性元件中的最小导通损耗。扩展了相同的方法,以使链路电流中的峰峰纹纹纹延伸为MPS-II。在MPS-III中,强制执行A​​C-Link电流中所需的总需求失真。使用二维(2-D)LUT考虑输入和输出之间的电压传输比的变化。此外,通过使用适当的曲线拟合运动来消除2-D LUT的要求,用于输出负载电压变化和1-D系数的1-D LUT。详细的仿真研究,采用和实验验证的相关数学分析从1 KW原型提出。

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