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Power management of photovoltaic and fuel cell hybrid system for a constant-power-demand DC supply bus using complementary energy dispatch

机译:使用互补能源调度,用于恒电源DC供电总线的光伏和燃料电池混合系统的电源管理

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This paper presents a power management for a photovoltaic (PV) and fuel cell (FC) hybrid system that complementarily dispatches energies into a constant-power-demand DC bus (DCB) through a boost current (BCC) and Z-source voltage (ZSVC) converters. A novel power-increment-aided maximum power point tracking (PI-INC MPPT) with a duty detection is used to guide the PV-BCC to pump PV energy fast and accurate as well as provide a burst regulation to FC-ZSVC for quick energy dispatch. Accordingly, the feed-in PV energy is priority for hybrid in consideration of energy treasuring. An experiment presents the mutual energy dispatch behavior between PV and FC for a down-scale constant 250-W DCB under different solar insolation tests.
机译:本文介绍了光伏(PV)和燃料电池(FC)混合系统的电源管理,该系统通过升压电流(BCC)和Z源电压(ZSVC)互补地将能量调度为恒电源DC总线(DCB)。 )转换器。具有占空比检测的新型电力增量辅助最大功率点跟踪(PI-Inc MPPT)来引导PV-BCC快速准确地泵浦PV能量,并为FC-ZSVC提供快速能量的突发调节派遣。因此,考虑到能量珍惜,进料PV能量优先于混合。在不同的太阳态度测试下,实验在PV和FC之间提供了用于下级常数250-W DCB的相互能量调度行为。

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