Integrated Switched Capacitor Array and Synchronous Charge Extraction with Adaptive Hybrid MPPT for Piezoelectric Harvesters
Pramit Karmakar, Siddharth B, Chinmay Murlidhar Kadnur Rao

TL;DR
This paper introduces an adaptive, simulated piezoelectric energy harvesting framework combining switched capacitor array, synchronous charge extraction, and hybrid MPPT to improve energy capture from ambient vibrations.
Contribution
It presents a novel integrated model that addresses non-linearity, bandwidth, and impedance mismatch in piezoelectric energy harvesting systems.
Findings
Hybrid MPPT outperforms conventional P&O.
SCA system shows resilience to variable frequency inputs.
Model effectively manages non-linearity in PEH systems.
Abstract
Energy Harvesting technologies will play a fundamental role in the development of the next generation of electronic systems as well as in advancing the development of sustainable infrastructure. One of the critical challenges in EH is utilizing ambient vibrations to harvest energy. Piezo Energy Harvesting, which uses ambient vibrations, is a promising technology in energy harvesting and a self-powered technology. However, it suffers from several practical challenges. Some of these challenges include narrow bandwidth, non-linearity, and impedance mismatch, among others. This paper presents a novel, simulated Piezo Energy Harvesting (PEH) framework that addresses some of these challenges. The proposed model is designed to be adaptive and effective against the inherent non-linearity of PEH. This detailed model covers a non-linear piezo, Synchronous Electric Charge Extraction (SECE), Hybrid…
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Taxonomy
TopicsInnovative Energy Harvesting Technologies · Energy Harvesting in Wireless Networks · Wireless Power Transfer Systems
MethodsElectric
