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Photovoltaic Energy Harvesting Chip With P&O Maximum Power Point Tracking Circuit and Novel Pulse-Based Multiplier

机译:具有P&O最大功率点跟踪电路和新型脉冲乘法器的光伏能量收集芯片

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摘要

A photovoltaic (PV) energy harvesting chip with novel multiplier-based perturb and observe (P&O) maximum power point tracking (MPPT) circuit for Internet-of-Things applications is proposed, and it can be powered by only a small PV module. The proposed P&O MPPT circuit can accurately detect the maximum power point of the PV module without using a power-hungry microcontroller or inaccurate analog multiplier. Instead, a high-accuracy pulse-based multiplier is proposed. Its input signals are analog, while its output signal is digital. Moreover, a new MPPT controller based on the proposed multiplier is also presented. The chip was fabricated using a 0.18 mu m 1P6M mixed-signal CMOS process. According to the measured results, the available power from the chosen PV module is 0.1-3 mW, the maximum tracking efficiency of the proposed MPPT circuit is 99.3%, and the maximum total efficiency of the proposed harvesting chip is 94.7%.
机译:提出了一种具有新型乘法机的扰动和观察(P&O)最大功率点跟踪(MPPT)电路的光伏(PV)能量收集芯片,用于用于互联网应用的应用程序,并且可以仅由小型PV模块供电。 所提出的P&O MPPT电路可以在不使用耗电的微控制器或不准确的模拟乘数的情况下精确地检测PV模块的最大功率点。 相反,提出了一种高精度的脉冲乘法器。 其输入信号是模拟的,而其输出信号是数字的。 此外,还呈现了基于所提出的乘法器的新MPPT控制器。 使用0.18μm1p6m混合信号CMOS工艺制造芯片。 根据测量结果,来自所选择的PV模块的可用功率为0.1-3兆瓦,所提出的MPPT电路的最大跟踪效率为99.3%,提出的收获芯片的最大总效率为94.7%。

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