• 제목/요약/키워드: piezoelectric energy harvester

검색결과 133건 처리시간 0.031초

압전소자를 이용한 에너지 하베스터용 전력변환장치 연구 (A Study of Power Conversion System for Energy Harvester Using a Piezoelectric Materials)

  • 안현성;김영철;차한주
    • 전기학회논문지
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    • 제66권7호
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    • pp.1059-1065
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    • 2017
  • In this paper, the energy harvester with a piezoelectric materials is modeled as the electric equivalent circuit, and performances of a standard DC method and a Parallel-SSHI method are verified through experiment under variable force and load conditions. Piezoelectric generator consists of mass, damper and spring constant, and it is modeled by electrical equivalent circuit with RLC components. Standard DC and Parallel-SSHI are used as power conversion methods, and standard DC consists of full-bridge rectifier and smoothing capacitor. Parallel-SSHI method is composed of L-C resonant circuit, zero-crossing detector and full-bridge rectifier. In case of simulation under $100k{\Omega}$ load condition, the harvested power is $500{\mu}W$ in Standard DC and $670{\mu}W$ in Parallel-SSHI, respectively. In experiment, the harvested power under $100k{\Omega}$ load condition is $420{\mu}W$ in standard DC and $602{\mu}W$ in Parallel-SSHI. Harvested power of Parallel-SSHI is improved by approximately 40% more than that of standard DC method.

압전 복합소재와 키리가미 섬유전극을 적용한 스트레쳐블 에너지 하베스팅 소자 (Stretchable Energy Harvester Based on Piezoelectric Composites and Kirigami Electrodes)

  • 김보란;현동열;박귀일
    • 한국전기전자재료학회논문지
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    • 제36권5호
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    • pp.525-530
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    • 2023
  • Stretchable piezoelectric energy harvester (S-PEHs) based on composite materials are considered one of the potential candidates for realizing wearable self-powered devices for smart clothing and electronic skin. However, low energy conversion performance and expensive stretchable electrodes are major bottlenecks hindering the development and application of S-PEHs. Here, we fabricated the S-PEH by adopting the piezoelectric composites with enhanced stress transfer properties and kirigami-patterned textile electrodes. The optimum contents of piezoelectric BaTiO3 nanoparticles inside the carbon nanotube/ecoflex composite were selected as 30 wt% considering the trade-off between stretchability and energy harvesting performance of the device. The final S-PEH shows an output voltage and mechanical stability of ~5 V and ~3,000 cycles under repeated 150% of tensile strain, respectively. This work presents a cost-effective and scalable way to fabricate stretchable piezoelectric devices for self-powered wearable electronic systems.

곡면을 가진 외팔보형 PVDF 에너지 하베스터의 와류유기진동으로 인한 에너지 수확 특성 (Energy harvesting characteristics on curvature based PVDF cantilever energy harvester due to vortex induced vibration)

  • 송우진;이종길
    • 한국음향학회지
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    • 제43권2호
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    • pp.168-177
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    • 2024
  • 수중 압전 에너지 하베스터(Piezoelectric Energy Harvester, PEH) 설계시 곡률변화를 통해 외팔보형 전체의 와류유기진동(Vortex Induced Vibration, VIV)을 생성시키고, VIV의 생성으로 곡면형 외팔보 PEH에 진동 변위가 증가한다는 것은 실제 전력을 증대 시키는 데 중요한 요소이다. 해석 모델인 곡면형 PEH의 재질은 Polyvinyline Di-Floride(PVDF) 압전 필름으로서 곡률이 다양한 50 mm, 130 mm, 210 mm 모델에 유속은 0.1 m/s ~ 0.50 m/s로 정하여 VIV에 의한 PEH의 스트레인 에너지 변화를 관찰하였다. 곡률 반경이 작을수록 큰 폭의 VIV가 나타났고, 유속이 증가할수록 VIV가 많이 나타났다. 작은 곡률로 인한 급격한 형상변환이 VIV의 생성에 효과적이었고 스트레인 에너지, 정규화 발생 전압, 평균 전력 등은 곡률이 증가할수록 감소하였다. PEH 자체의 전력량을 증대시키기 위해 급한경사의 곡률 개선뿐만 아니라 곡률형 PEH의 개수가 늘어남에 따라 평균 전력도 상승할 것으로 사료된다.

오픈소스 기반 빅데이터 플랫폼의 에너지 하베스터 최적설계 적용 연구 (Application of Open Source, Big Data Platform to Optimal Energy Harvester Design)

  • 유은섭;김석찬;이한민;문두환
    • 한국기계가공학회지
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    • 제17권2호
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    • pp.1-7
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    • 2018
  • Recently, as interest in the internet of things has increased, a vibration energy harvester has attracted attention as a power supply method for a wireless sensor. The vibration energy harvester can be divided into piezoelectric types, electromagnetic type and electrostatic type, according to the energy conversion type. The electromagnetic vibration energy harvester has advantages, in terms of output density and design flexibility, compared to other methods. The efficiency of an electromagnetic vibration energy harvester is determined by the shape, size, and spacing of coils and magnets. Generating all the experimental cases is expensive, in terms of time and money. This study proposes a method to perform design optimization of an electromagnetic vibration energy harvester using an open source, big data platform.

가로등 제어용 다층패드형 압전 하베스터의 개발 및 평가 (Development and Evaluation of Rack Type Piezoelectric Harvester for Smart Street Lamps Control)

  • 김창일;정영훈;박운익;조정호;장용호;최범진;박신서;백종후
    • 한국전기전자재료학회논문지
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    • 제29권11호
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    • pp.696-701
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    • 2016
  • In this study, to increase output of road piezoelectric energy harvester, it was made into rack type in which many piezoelectric materials can be installed and load transfer device of the leverage type to transfer vehicle load was made. By paving it in the road, the output characteristics depending on vehicle load and speed were evaluated. Changing vehicle load, harvester output characteristics depending on speed changes were evaluated at the interval of 10 km/h from 10 km/h to 100 km/h. Also, by making a wireless switch and sending wireless signal with output of rack type harvester, whether to receive it was evaluated by distance. It was checked that all switches work up to front-to-back 100 m from harvester.

회전기기 실시간 동작상태 모니터링을 위한 자가발전 기반 센서모듈 (Self-Powered Integrated Sensor Module for Monitoring the Real-Time Operation of Rotating Devices)

  • 김창일;여서영;박범근;정영훈;백종후
    • 센서학회지
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    • 제28권5호
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    • pp.311-317
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    • 2019
  • Rotating devices are commonly installed in power plants and factories. This study proposes a self-powered sensor node that is powered by converting the vibration energy of a rotating device into electrical energy. The self-powered sensor consists of a piezoelectric harvester for self-power generation, a rectifier circuit to rectify the AC signal, a sensor unit for measuring the vibration frequency, and a circuit to control the light emitting diode (LED) lighting. The frequency of the vibration source was measured using a piezoelectric-cantilever-type vibration frequency sensor. A green LED was illuminated when the measured frequency was within the normal range. The power generated by the piezoelectric harvester was determined, and the LED operation was assessed in terms of the vibration frequency. The piezoelectric harvester was found to generate a power of 3.061 mW or greater at a vibration acceleration of 1.2 g ($1g=9.8m/s^2$) and vibration frequencies between 117 and 123 Hz. Notably, the power generated was 4.099 mW at 122 Hz. As such, our self-powered sensor node can be used as a module for monitoring rotating devices, because it can convert vibration energy into electrical energy when installed on rotating devices such as air compressors.

고전압 비교기를 적용한 스마트 센서용 SECE 에너지 하베스트 인터페이스 회로 설계 (Design of SECE Energy Harvest Interface Circuit with High Voltage Comparator for Smart Sensor)

  • 석인철;이경호;한석붕
    • 한국전자통신학회논문지
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    • 제14권3호
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    • pp.529-536
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    • 2019
  • 스마트 센서 시스템에 압전 에너지 하베스터를 적용하기 위해서는 AC-DC 정류기를 비롯한 에너지 하베스트 인터페이스 회로가 필수적이다. 본 논문에서는 기본적인 회로인 Full Bridge Rectifier(: FBR) 회로와 동기식 압전 에너지 하베스트 인터페이스 회로의 성능을 보드레벨 시뮬레이션으로 비교하였다. 그 결과, 동기식 압전 에너지 하베스트 인터페이스 회로 중 하나인 Synchronous Electric Charge Extraction(: SECE) 회로가 FBR에 비해 출력 전력이 약 4 배 이상 더 컸고, 부하 변동에도 변화가 거의 없었다. 그리고, 출력 전압이 40V 이상인 압전 에너지 하베스터용 SECE 회로에 필수적인 고전압 비교기를 0.35 um BCD 공정으로 설계하였다. 설계한 고전압 비교기를 적용한 SECE 회로는 출력 전력이 FBR 회로 보다 427 % 향상됨을 검증하였다.