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Photovoltaic sample-and-hold circuit enabling MPPT indoors for low-power systems

机译:光伏采样保持电路使mppT能够在室内实现低功耗系统

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摘要

Photovoltaic (PV) energy harvesting is commonly used to power autonomous devices, and maximum power point tracking (MPPT) is often used to optimize its efficiency. This paper describes an ultra low-power MPPT circuit with a novel sample-and-hold and cold-start arrangement, enabling MPPT across the range of light intensities found indoors, which has not been reported before. The circuit has been validated in practice and found to cold-start and operate from 100 lux (typical of dim indoor lighting) up to 5000 lux with a 55cm2 amorphous silicon PV module. It is more efficient than non-MPPT circuits, which are the state-of-the-art for indoor PV systems. The proposed circuit maximizes the active time of the PV module by carrying out samples only once per minute. The MPPT control arrangement draws a quiescent current draw of only 8uA, and does not require an additional light sensor as has been required by previously-reported low-power MPPT circuits.
机译:光伏(PV)能量收集通常用于为自主设备供电,而最大功率点跟踪(MPPT)通常用于优化其效率。本文介绍了一种具有新颖的采样保持和冷启动配置的超低功耗MPPT电路,该电路可使MPPT能够在室内发现的各种光强度范围内工作,这一点以前从未见过报道。该电路已在实践中得到验证,发现可以使用55平方厘米的非晶硅PV模块冷启动并在100 lux(典型的昏暗室内照明)至5000 lux的温度下运行。它比非MPPT电路更有效,后者是室内PV系统的最新技术。提议的电路通过每分钟仅执行一次采样来最大化PV模块的激活时间。 MPPT控制装置仅消耗8uA的静态电流,并且不需要先前报告的低功率MPPT电路所需的额外光传感器。

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