DocumentCode :
114961
Title :
Parametric analysis of boost converter for energy harvesting using piezoelectric for micro devices
Author :
Wahab, Shafii A. ; Bhuyan, M.S. ; Sampe, Jahariah ; Ali, Sawal H. M.
Author_Institution :
Inst. of Microeng. & Nanoelectron. (IMEN), Univ. Kebangsaan Malaysia, Bangi, Malaysia
fYear :
2014
fDate :
27-29 Aug. 2014
Firstpage :
525
Lastpage :
528
Abstract :
Lower amount of power delivered from piezoelectric based ambient vibration energy harvester devices is a barrier to adopt the technology for different applications. Energy harvesting circuitry can enhance power output to provide a regulated DC supply to the end application. In this paper, various circuit simulations are carried out to investigate output power enhancement. A parametric analysis of a boost circuit simulation using Cadence OrCAD Capture PSpice software with input less than 1 V is carried out to find the optimum parameters including, the switching frequency rise and fall times, duty cycle, inductance and load capacitance value. Simulation results show that passive component based boost converter can significantly increase the voltage output of an ambient vibration based energy harvester. The output voltage increases linearly with the increase of single supply voltage input range 0.1 V to 0.5 V, to the output voltage range of 7 to 35 V. The optimum parameter found for 10 kΩ load is 100 μH inductor and 1μF load capacitor. A comparison of output performance of the boost circuit with existing literature is presented. The ease of the boost converter circuit will facilitate the development of an efficient piezoelectric energy harvesters for low power applications like automotive, healthcare portable devices, and wireless sensor networks.
Keywords :
SPICE; circuit simulation; energy harvesting; low-power electronics; micromechanical devices; piezoelectric transducers; power convertors; vibrations; Cadence OrCAD Capture PSpice software; boost circuit simulation; capacitance 1 muF; circuit simulations; duty cycle; energy harvesting circuitry; fall times; inductance; inductor; load capacitance value; load capacitor; microdevices; output power enhancement; parametric analysis; passive component based boost converter; piezoelectric based ambient vibration energy harvester devices; regulated DC supply; resistance 10 kohm; switching frequency rise; Capacitors; Energy harvesting; Inductors; Resistance; Switches; Vibrations; Wireless sensor networks; Energy harvester; boost converter; parmetric analysis; piezoelectric;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Semiconductor Electronics (ICSE), 2014 IEEE International Conference on
Conference_Location :
Kuala Lumpur
Type :
conf
DOI :
10.1109/SMELEC.2014.6920914
Filename :
6920914
Link To Document :
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