首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 0.4W-to-21W Fast-Transient Global-Search-Algorithm Based Integrated Photovoltaic Energy Harvester With 99% GMPPT Efficiency and 94% Power Efficiency
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A 0.4W-to-21W Fast-Transient Global-Search-Algorithm Based Integrated Photovoltaic Energy Harvester With 99% GMPPT Efficiency and 94% Power Efficiency

机译:基于0.4W至21W的快速瞬态全局搜索算法的集成光伏能量采集器,具有99%的GMPPT效率和94%的功率效率

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摘要

This paper presents an integrated photovoltaic energy harvester that is capable of performing global maximum power point tracking (GMPPT) with significant reductions in MPPT transient time, power dissipation and silicon area. A fasttransient global search algorithm is proposed to identify the GMPP of a solar panel within hundreds of μs in the presence of multiple local maxima during partial shading conditions. The pulse integration based MPPT circuitry enables highprecision MPPT. Ripple-based irradiance aware adaptive frequency control (IAAFC) is also developed to lower the switching power loss under low irradiance levels, improving the harvester power efficiency over a wide output power range. The proposed energy harvester was implemented in 50 V 0.35 μm CMOS. It tracks the GMPP in 350 μs in the presence of two local maxima with 99% GMPP tracking efficiency. The IAAFC enables the proposed harvester to achieve > 85% power efficiency over a wide power range from 0.98 to 21 W with the peak power efficiency of 94.2% at 1 MHz. The proposed harvester improves the MPPT transient time and the power density by at least 4.5 times and 6 times, respectively, compared with state-ofthe-art counterparts.
机译:本文介绍了一种集成式光伏能量采集器,该采集器能够执行全局最大功率点跟踪(GMPPT),并显着减少MPPT瞬态时间,功耗和硅面积。提出了一种快速瞬态全局搜索算法,以在部分阴影条件下存在多个局部最大值的情况下,在数百微秒内识别太阳能电池板的GMPP。基于脉冲积分的MPPT电路可实现高精度MPPT。还开发了基于波纹的辐照度感知自适应频率控制(IAAFC),以降低低辐照度水平下的开关功率损耗,从而在较宽的输出功率范围内提高收割机的功率效率。拟议的能量收集器在50 V 0.35μmCMOS中实现。在存在两个局部最大值的情况下,它可以在350μs内跟踪GMPP,GMPP跟踪效率为99%。 IAAFC使拟议中的收割机在0.98至21 W的宽功率范围内实现大于85%的功率效率,在1 MHz时的峰值功率效率为94.2%。与最先进的同类产品相比,拟议的收割机将MPPT瞬态时间和功率密度分别提高了至少4.5倍和6倍。

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