A 3.4mW photovoltaic energy-harvesting charger with integrated maximum power point tracking and battery management

T. Tsai, Kai Chen
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引用次数: 30

Abstract

Energy harvesting is an attractive technique to take advantage of renewable energy and make systems, such as wireless sensor nodes, less dependent on external power sources. A photovoltaic (PV) energy-harvesting charger can convert energy from solar panels to charge batteries or super capacitors. To manage the variation in illumination, maximum power point tracking (MPPT) is essential to lock the output power of solar panels on the maximum power points [1, 2]. For any generic solar cell, its output current is determined by the output voltage in an exponential relation. Without knowing the characteristics of the solar cell in advance, it is necessary to monitor a feedback parameter to reach its maximum power point. Current measurement is needed at the output of the boost converter [1] or in the output path of the solar cell [2]. Motivated by the topology in [2], we propose a mixed-signal integration to avoid power hungry digital signal processing. In this paper, we report a charger with an integrated MPPT controller that can provide fast tracking for wide-range illumination levels while keeping high conversion efficiency. Also, a battery management unit is implemented and integrated on the same IC.
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3.4mW光伏能量收集充电器,集成了最大功率点跟踪和电池管理
能量收集是一项有吸引力的技术,它利用可再生能源,使系统(如无线传感器节点)减少对外部电源的依赖。光伏(PV)能量收集充电器可以将太阳能电池板的能量转换为电池或超级电容器充电。为了控制光照的变化,最大功率点跟踪(MPPT)是将太阳能电池板的输出功率锁定在最大功率点上的必要手段[1,2]。对于一般的太阳能电池,其输出电流是由输出电压以指数关系决定的。在事先不知道太阳能电池特性的情况下,有必要监测一个反馈参数以达到其最大功率点。需要在升压变换器的输出端[1]或在太阳能电池的输出路径[2]进行电流测量。受[2]中的拓扑结构的启发,我们提出了一种混合信号集成,以避免耗电的数字信号处理。在本文中,我们报告了一个集成MPPT控制器的充电器,它可以在保持高转换效率的同时提供大范围照明水平的快速跟踪。此外,还在同一IC上实现并集成了电池管理单元。
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