압전 재료를 이용한 진동에너지 변환 전력발생 시스템 해석 및 설계

System Analysis and Design for Vibration-Based Power Generation using Piezoelectric Materials

초록

A power generation systems are proposed to convert ambient mechanical vibration into electrical energy using cantilever-type piezoelectric materials. The vibration-based power device can be used for self-powered systems without batteries. This paper presents the theoretical analysis for the coupled equations of piezoelectric and structural motions and investigates the dynamic characteristics of the self-power system using transfer function method. The theoretical model is verified by the finite element analysis of the resonance frequency, the dynamic response of the structure and the sensor sensibility. Experimental results measured using a prototype system agree with the theoretical predictions. The system is shown to produce 34.5 ㎼ in average. Finally, we perform the optimal design for system variables to maximize output power.

키워드

Ambient Energy(여유에너지)Electric Energy(전기에너지)Energy Converter(에너지 변환)Micro Power Generation(초소형 전력 발생)System Analysis(시스템 해석)Optimal Design(최적 설계)Piezoelectric Materials(압전 재료)Vibration Energy(진동에너지)Ambient Energy(여유에너지)Electric Energy(전기에너지)Energy Converter(에너지 변환)Micro Power Generation(초소형 전력 발생)System Analysis(시스템 해석)Optimal Design(최적 설계)Piezoelectric Materials(압전 재료)Vibration Energy(진동에너지)
제목
압전 재료를 이용한 진동에너지 변환 전력발생 시스템 해석 및 설계
제목 (타언어)
System Analysis and Design for Vibration-Based Power Generation using Piezoelectric Materials
저자
이승엽고병식금명훈김경호
발행일
2004-06
저널명
대한기계학회논문집 A
28
6
페이지
717 ~ 725