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A Bias-Flip Rectifier With Duty-Cycle-Based MPPT for Piezoelectric Energy Harvesting

Xinling Yue, Sundeep Javvaji, Zhong Tang, Kofi A. A. Makinwa, Sijun Du

2023IEEE Journal of Solid-State Circuits26 citationsDOI

Abstract

Bias-flip rectifiers are commonly employed for piezoelectric energy harvesting (PEH). This article proposes a synchronized switch harvesting on an inductor (SSHI) rectifier with a duty-cycle-based (DCB) maximum power point tracking (MPPT) algorithm. The proposed DCB MPPT algorithm is based on the mathematically derived relation between the MPPT efficiency and the duty cycle of the bridge rectifier. The resulting equation shows that the MPPT efficiency only depends on the rectifier duty cycle, and is independent of any other system variables, such as voltage bias-flipping efficiency, the open-circuit voltage from the harvester, vibration frequency, etc. As a result, MPPT can be achieved by regulating the duty cycle, simplifying circuit implementation, and achieving self-regulating and continuous MPPT. This design was fabricated in a 180-nm BCD process. The measured results show 98% peak MPPT efficiency and up to 738% output power enhancement.

Topics & Concepts

Duty cycleMaximum power point trackingRectifier (neural networks)Control theory (sociology)Energy harvestingVoltageInductorMaximum power principlePower (physics)EngineeringComputer scienceElectrical engineeringInverterPhysicsMachine learningArtificial neural networkArtificial intelligenceRecurrent neural networkStochastic neural networkQuantum mechanicsControl (management)Innovative Energy Harvesting TechnologiesEnergy Harvesting in Wireless NetworksWireless Power Transfer Systems
A Bias-Flip Rectifier With Duty-Cycle-Based MPPT for Piezoelectric Energy Harvesting | Litcius