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A Dual-Stage Boost Converter Using Two- Dimensional Adaptive Input-Sampling MPPT for Thermoelectric Energy Harvesting

机译:一种双级升压转换器,使用二维自适应输入采样MPPT进行热电能量收集

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Herein, we present a dual-stage boost converter (DSBC) for ultra-low power (ULP) thermoelectric energy harvesting applications. The proposed DSBC provides improved efficiency over a wide input range by effectively combining inductor-based boost converter (IBC) and transformer-based boost converter (TBC) modes. The converter supports self-startup by using a transformer-based oscillating mode (TOM) and reuses otherwise wasted leakage through energy regenerative recovery. To provide efficient power extraction, we propose a two-dimensional (2D) adaptive input-sampling maximum power point tracking (MPPT) technique. Input sampling is performed adaptively when a relatively large change in the input is detected. Otherwise, the input is finely tracked by 2D MPPT, which controls the on-time of a power switch. The proposed approach provides two main advantages: 1) adaptive sampling prevents unnecessary periodic detachment of the thermoelectric generator (TEG) from the converter and 2) in addition to enhanced tracking resolution, the 2D MPPT controller achieves both MPPT and output regulation simultaneously. To support the DSBC, we present a synchronized zero current switching (S-ZCS) controller. The S-ZCS controller achieves fine tracking and optimization of the on-times of the two power switches for TBC and IBC. The converter was fabricated via a 180-nm CMOS process with a thick top-metal option. Measurements show that the converter achieves energy harvesting with an efficiency of 81.5. Over a wide input range, from 70 to 450 mV, the efficiency remains higher than 75, thereby demonstrating the effectiveness of the proposed DSBC with the S-ZCS and 2D MPPT techniques. Self-startup is achieved at a low input voltage of 38 mV.
机译:这里,我们为超低功率(ULP)热电能量收集应用提供了一种双级升压转换器(DSBC)。通过有效地组合基于电感的升压转换器(IBC)和基于变压器的升压转换器(TBC)模式,所提出的DSBC通过宽输入范围提供了更高的效率。通过使用基于变压器的振荡模式(TOM)并通过能量再生恢复,通过使用基于变压器的振荡模式(TOM)并重新使用泄漏来支持自启动。为了提供有效的电力提取,我们提出了一种二维(2D)自适应输入采样最大功率点跟踪(MPPT)技术。当检测到输入的输入中相对较大的变化时,自适应地执行输入采样。否则,通过2D MPPT进行精细跟踪输入,该输入控制电源开关的接通时间。所提出的方法提供了两个主要优点:1)自适应采样防止热电发电机(TEG)从转换器和2)除了增强的跟踪分辨率之外,2D MPPT控制器同时实现MPPT和输出调节。为了支持DSBC,我们呈现了同步的零电流切换(S-ZCS)控制器。 S-ZCS控制器实现了TBC和IBC两个电源开关的延时的精细跟踪和优化。转换器通过180nm CMOS工艺制造,具有厚的顶部金属选项。测量表明,转换器达到81.5的效率达到能量收集。在宽的输入范围内,从70到450 mV,效率保持高于75,从而展示了所提出的DSBC与S-ZCS和2D MPPT技术的有效性。在38 mV的低输入电压下实现自启动。

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