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首页> 外文期刊>American journal of applied sciences >Architecture of an Ultra-Low-Power Fully Autonomous Universal Power Conditioner of Energy Harvester for Wireless Sensor Networks: A Review | Science Publications
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Architecture of an Ultra-Low-Power Fully Autonomous Universal Power Conditioner of Energy Harvester for Wireless Sensor Networks: A Review | Science Publications

机译:无线传感器网络的能量收集器超低功耗全自动通用功率调节器的架构科学出版物

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> >A fully autonomous Universal Power Conditioner (UPC) that can accept energy from any micro-energy harvester (e.g., photovoltaic, thermoelectric, electromagnetic, piezoelectric etc.) is proposed. Generally, UPC removes the need of multiple optimized source specific converters. But, the proposed UPC architecture will be Ultra-Low-Power (ULP) with maximized efficiency to support the low energy levels generated by harvesting sources. This UPC uses a universal source detection block consisting of source converter block, boost converter, storage unit and buck regulation. A voltage threshold block reduces the energy processing stage. A kick-start circuit enables self-starting operation. A power management block achieves efficiency in energy storage and charge cycles. The UPC will be modeled, designed and simulated in PSPICE. A behavioral model will be designed and simulated on Modelsim. The UPC will be realized on FPGA board, validated and analyzed in layout using 0.13 µm CMOS process technology. The expected result is a feasible arbitrary input source detector capable of 2-3 different sources with minimum 1 mW output power for WSN nodes or charging battery sets. The power converters are expected to consume 100 µW at 90% peak efficiency with input dc voltage at 0.02-5 V and output dc voltage from 0.5-5 V.
机译: > >提出了一种可以接受任何微能量收集器(例如光伏,热电,电磁,压电等)的能量的全自动通用功率调节器(UPC)。通常,UPC不需要多个优化的源特定转换器。但是,提议的UPC体系结构将是具有最大效率的超低功耗(ULP),以支持由采集源产生的低能耗。该UPC使用通用的源检测模块,该模块包括源转换器模块,升压转换器,存储单元和降压调节。电压阈值块减少了能量处理阶段。脚踏启动电路可实现自启动操作。电源管理模块可提高能量存储和充电周期的效率。将在PSPICE中对UPC进行建模,设计和仿真。行为模型将在Modelsim上进行设计和仿真。 UPC将在FPGA板上实现,并使用0.13 µm CMOS工艺技术对布局进行验证和分析。预期结果是一个可行的任意输入源检测器,该检测器能够为WSN节点或充电电池组提供2-3种不同的源,且输出功率至少为1 mW。在输入直流电压为0.02-5 V,输出直流电压为0.5-5 V的情况下,功率转换器预计在> 90%的峰值效率下消耗<100 µW。

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