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Maximum power point tracking CMOS circuit to connect a solar cell into a solid-state battery

机译:最大功率点跟踪CMOS电路,用于将太阳能电池连接到固态电池中

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摘要

This paper presents a Maximum Power Point Tracking (MPPT) circuit in CMOS technology for integration into an energy harvesting solution, comprising a solid-state thin-film lithium battery fabricated in the back side of a plastic solar cell. The MPPT CMOS circuit is required in the energy transfer process from the solar cell to the battery. The MPPT circuit was designed in the 0.7 µm CMOS process from on semiconductor (former AMIS, Alcatel-Mietec). The pulse width modulation (PWM) gate control of the DC-DC step-up converter is obtained only with analog circuits, which are composed by rail-to-rail operational amplifiers, analog multipliers and a ring oscillator. The ripple correlation control algorithm is used in the implementation of the analog MPPT circuit. This is a dynamically rapid method (e.g., 5 ms step response was measured) where the inevitable ripple of the inductor current of the DC-DC converter is analyzed and used to adjust the set-point of the same DC-DC converter. The full energy harvesting is also described in this paper.
机译:本文提出了一种用于集成到能量收集解决方案中的CMOS技术中的最大功率点跟踪(MPPT)电路,该电路包括在塑料太阳能电池的背面制造的固态薄膜锂电池。从太阳能电池到电池的能量传输过程中需要MPPT CMOS电路。 MPPT电路是在半导体(以前的AMIS,阿尔卡特-米特)的0.7 µm CMOS工艺中设计的。 DC-DC升压转换器的脉冲宽度调制(PWM)门控仅可通过模拟电路获得,该模拟电路由轨到轨运算放大器,模拟乘法器和环形振荡器组成。纹波相关控制算法用于模拟MPPT电路的实现中。这是一种动态快速的方法(例如,测量了5毫秒的阶跃响应),其中分析了DC-DC转换器的电感电流的不可避免的纹波,并用于调整同一DC-DC转换器的设定点。本文还介绍了完整的能量收集。

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