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首页> 外文期刊>Trends in Ecology & Evolution >Three Phase Current-Fed Semi Dual Active Bridge DC-DC Converter With Hybrid Operating Mode Control
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Three Phase Current-Fed Semi Dual Active Bridge DC-DC Converter With Hybrid Operating Mode Control

机译:具有混合式操作模式控制的三相电流馈电半主动桥DC-DC转换器

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摘要

A high-frequency isolated unidirectional three phase (3p) current-fed (CF) semi-dual active bridge (SDAB) dc-dc converter is proposed for unidirectional power-flow applications suitable for wide input and load variations with small input current ripple, such as for fuel stacks and photovoltaic (PV) array. A hybrid operating mode control was proposed to handle the operating stability throughout full load range especially the light load conditions by which, dual-pulsewidth modulation (PWM) and phase shifted control with fixed clamping voltage was implemented over certain kind of load while varying clamping voltage using only dual-PWM (D-PWM) control was used under light-load conditions. The ideal power transferred expressions are derived based on the analysis of power transmission characteristics. The ideal rms expressions of the leakage inductor current are ideally derived for leakage inductance value optimization or minimizing the loss; and the ideal soft-switching conditions based on charges have been given. A 2 kW 3p-CF-SDAB prototype using SiC MOSFETs has been built to verify the validity the proposed control strategy. With the proposed control, the steady-state performance throughout full load of range is pretty well. Seamless transition can be obtained between the two operating modes and the dynamic performance is good. The conversion efficiency is high and the loss distribution is given.
机译:提出了一种高频分离的三相(3P)电流馈电(CF)半双极电桥(SDAB)DC-DC转换器,用于适用于具有小输入电流纹波的宽输入和负载变化的单向动力流应用,例如燃料堆叠和光伏(PV)阵列。提出了一种混合操作模式控制来处理整个负载范围内的操作稳定性,尤其是在不同的负载中实现了通过该脉冲宽度调制(PWM)和相移电压的相位偏移控制在不同的钳位电压时实现了具有固定钳位电压的相位偏移控制仅使用双PWM(D-PWM)控制在轻负载条件下使用。基于对电力传输特性的分析来导出理想的功率传输表达式。泄漏电感器电流的理想RMS表达式得到泄漏电感值优化或最小化损耗;并且已经提供了基于充电的理想软切换条件。建立了2千瓦3P-CF-SDAB原型,用于验证所提出的控制策略的有效性。随着所提出的控制,稳态性能在整个范围内都很好。可以在两种操作模式之间获得无缝转换,动态性能好。转换效率高,给出损耗分布。

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