A Dual-Stage Boost Converter Using Two- Dimensional Adaptive Input-Sampling MPPT for Thermoelectric Energy Harvesting
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[1] G. Cho,et al. A 40 mV Transformer-Reuse Self-Startup Boost Converter With MPPT Control for Thermoelectric Energy Harvesting , 2012, IEEE Journal of Solid-State Circuits.
[2] Kai Strunz,et al. A 20 mV Input Boost Converter With Efficient Digital Control for Thermoelectric Energy Harvesting , 2010, IEEE Journal of Solid-State Circuits.
[3] Yuan Gao,et al. A 220-mV Power-on-Reset Based Self-Starter With 2-nW Quiescent Power for Thermoelectric Energy Harvesting Systems , 2017, IEEE Transactions on Circuits and Systems I: Regular Papers.
[4] Mohamed M. Aboudina,et al. Dual-Source Self-Start High-Efficiency Microscale Smart Energy Harvesting System for IoT , 2018, IEEE Transactions on Industrial Electronics.
[5] Anantha Chandrakasan,et al. 23.2 A 1.1nW energy harvesting system with 544pW quiescent power for next-generation implants , 2014, 2014 IEEE International Solid-State Circuits Conference Digest of Technical Papers (ISSCC).
[6] Raşit Ahiska,et al. Application of a DC–DC boost converter with maximum power point tracking for low power thermoelectric generators , 2015 .
[7] Anantha Chandrakasan,et al. A Battery-Less Thermoelectric Energy Harvesting Interface Circuit With 35 mV Startup Voltage , 2010, IEEE Journal of Solid-State Circuits.
[8] Ryan Bahr,et al. A Novel Solar and Electromagnetic Energy Harvesting System With a 3-D Printed Package for Energy Efficient Internet-of-Things Wireless Sensors , 2017, IEEE Transactions on Microwave Theory and Techniques.
[9] Yiannos Manoli,et al. A 2.6 $\mu \text{W}$ –1.2 mW Autonomous Electromagnetic Vibration Energy Harvester Interface IC with Conduction-Angle-Controlled MPPT and up to 95% Efficiency , 2017, IEEE Journal of Solid-State Circuits.
[10] Philip K. T. Mok,et al. Design of Transformer-Based Boost Converter for High Internal Resistance Energy Harvesting Sources With 21 mV Self-Startup Voltage and 74% Power Efficiency , 2014, IEEE Journal of Solid-State Circuits.
[11] Dejan Markovic,et al. A Miniaturized 0.78-mW/cm2 Autonomous Thermoelectric Energy-Harvesting Platform for Biomedical Sensors , 2017, IEEE Transactions on Biomedical Circuits and Systems.
[12] Koichi Ishida,et al. Startup Techniques for 95 mV Step-Up Converter by Capacitor Pass-On Scheme and ${\rm V}_{\rm TH}$-Tuned Oscillator With Fixed Charge Programming , 2012, IEEE Journal of Solid-State Circuits.
[13] Sang Hee Kang,et al. Efficiency Optimization in Digitally Controlled Flyback DC–DC Converters Over Wide Ranges of Operating Conditions , 2012, IEEE Transactions on Power Electronics.
[14] Alexander Abramovitz,et al. State-Plane Analysis of Regenerative Snubber for Flyback Converters , 2013, IEEE Transactions on Power Electronics.
[15] Anantha Chandrakasan,et al. Platform architecture for solar, thermal and vibration energy combining with MPPT and single inductor , 2011, 2011 Symposium on VLSI Circuits - Digest of Technical Papers.
[16] Anantha P. Chandrakasan,et al. A 1.1 nW Energy-Harvesting System with 544 pW Quiescent Power for Next-Generation Implants , 2014, IEEE Journal of Solid-State Circuits.
[17] Andrea Montecucco,et al. Maximum Power Point Tracking Converter Based on the Open-Circuit Voltage Method for Thermoelectric Generators , 2015, IEEE Transactions on Power Electronics.
[18] P. Dziurdzia,et al. Improved electrothermal model of the thermoelectric generator implemented in SPICE , 2008, 2008 International Conference on Signals and Electronic Systems.
[19] Yajie Qin,et al. A SIDIDO DC–DC Converter With Dual-Mode and Programmable-Capacitor-Array MPPT Control for Thermoelectric Energy Harvesting , 2017, IEEE Transactions on Circuits and Systems II: Express Briefs.
[20] Howard Tang,et al. A 400 nW Single-Inductor Dual-Input–Tri-Output DC–DC Buck–Boost Converter With Maximum Power Point Tracking for Indoor Photovoltaic Energy Harvesting , 2015, IEEE Journal of Solid-State Circuits.
[21] Chulwoo Kim,et al. A DC-DC boost converter with variation tolerant MPPT technique and efficient ZCS circuit for thermoelectric energy harvesting applications , 2014, 2014 19th Asia and South Pacific Design Automation Conference (ASP-DAC).
[22] Haoyu Wang,et al. A Discontinuous Conduction Mode Single-Stage Step-Up Rectifier for Low-Voltage Energy Harvesting Applications , 2017, IEEE Transactions on Power Electronics.