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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >Single-Inductor Dual-Input Dual-Output Battery-PV Hybrid System With 2-D Adaptive On-Time Control for Internet of Things
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Single-Inductor Dual-Input Dual-Output Battery-PV Hybrid System With 2-D Adaptive On-Time Control for Internet of Things

机译:单电感器双输入双输出电池 - PV混合系统,具有2-D互联网的2-D自适应准时控制

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摘要

In this article, we present a single-inductor dual-input dual-output power converter with two-dimensional adaptive-on-time (2-D AOT) control for Internet of things (IoT) applications. The proposed system combines energy from a 0.55-0.7 V photovoltaic (PV) module with a non-rechargeable 1.4-V zinc-air battery to extend the battery life. The proposed converter employs the buck-boost mode and the buck mode for the PV module and the battery, respectively, to produce two output voltages for different loading currents. The proposed 2-D AOT technique not only reduces the output voltage ripple but also improves the dual-source conversion efficiency over a wide input voltage range. Moreover, the response time of the self-tracking zero-current detector can also be improved by the proposed 2-D AOT. We fabricated the test chip using 0.18-mu m technology in an area of 1.9 x 2.2 mm(2). The measurement results demonstrated a peak efficiency of 92.5% with an input voltage range of 0.55-1.4 V. The output voltage ripple was less than 2.3% VOUT under different input voltage ranges.
机译:在本文中,我们为单一电感双输入双输出功率转换器提供了具有二维自适应(2-D AOT)控制的用于物联网(IOT)应用程序。所提出的系统将能量与0.55-0.7 V光伏(PV)模块相结合,具有不可充电的1.4-V锌空气电池,以延长电池寿命。所提出的转换器分别采用降压 - 升压模式和PV模块和电池的降压模式,为不同的负载电流产生两个输出电压。所提出的2-D AOT技术不仅减少了输出电压纹波,而且还可以在宽输入电压范围内提高双源转换效率。此外,通过所提出的2-D AOT还可以改善自动跟踪零电流检测器的响应时间。我们使用0.18-mu M技术在1.9×2.2mm(2)的区域中制造了测试芯片。测量结果表明,92.5%的峰值效率,输入电压范围为0.55-1.4V。输出电压纹波在不同输入电压范围下的VOUT小于2.3%。

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