• 제목/요약/키워드: piezoelectric power generator

검색결과 44건 처리시간 0.022초

무선 센서 노드용 진동형 마이크로 압전 에너지 하베스팅 설계 및 분석 (Design and analysis of vibration micro piezoelectric energy harvesting for wireless sensor nodes)

  • 윤규형;정귀상
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 추계학술대회 논문집
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    • pp.277-277
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    • 2009
  • In this paper, PMPG (Piezoelectric Micro Power Generator) was investigated by ANSYS FEA (Finite Element Analysis) to decrease operating frequency and improve out power. The micro power generator was designed to convert ambient vibration energy to electrical power as a ZnO piezoelectric material. To find optimal model in low vibration ambient, the shape of power generator was changed with different membrane width, thickness, length, and proof mass size. Used the ANSYS modal analysis, bending mode and stress distribution of optimal model were analyzed. Also, the displacement with the frequency range was analyzed by harmonic analysis. From the simulation results, the resonance frequency of optimal model is about 373 Hz and confirmed the possibility of ZnO micro power generator for wireless sensor node applications.

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압전 발전기를 이용한 에너지 수확 장치 개발 (Development of the Energy Harvesting Device using Piezoelectric Generator)

  • 전호익;정성수;정현호;박충효;박민호;박태곤
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 하계학술대회 논문집
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    • pp.439-439
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    • 2009
  • Nowadays, source of MEMS, USN, Hybrid parts pay attention to energy harvesting. On this paper, energy harvesting was studied using piezoelectric effect. And, piezoelectric generator was designed and fabricated. Generators were designed by FEM simulation program and generators were made by attaching cymbal type metal plates on upper and bottom sides of a disc type piezoelectric ceramic. Output AC power was rectified to DC power by full bridge circuit and converted to regular voltage power by DC-DC converter. The final output power was charged to Ni-Cd battery. Using fabricated generators, output voltages dependant on thickness of ceramic, displacement of vibration, frequency of vibration were measured.

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저주파수용 ZnO 압전 마이크로 전원의 설계와 분석 (Design and analysis of ZnO piezoelectric micro power generators with low frequency)

  • 정귀상;윤규형
    • 센서학회지
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    • 제18권5호
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    • pp.372-376
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    • 2009
  • This paper describes the characteristics of piezoelectric micro power generators by the ANSYS FEA(finite element analysis). The micro power generator was designed to convert ambient vibration energy to electrical power as a ZnO piezoelectric material. To find optimal model in low vibration ambient, the shape of power generator was changed with different membrane width, thickness, length, and proof mass size. Using the ANSYS modal analysis, bending mode and stress distribution of optimal model were analyzed. Moreover, the displacement with the frequency range was analyzed by harmonic analysis. From the simulation results, the resonance frequency of optimal model is about 373 Hz and investigate the possibility of ZnO micro power generator for ambient vibration applications.

CMOS 공정에 적합한 AlN 압전 마이크로 발전기의 제작 및 특성 (Fabrication of AlN piezoelectric micro power generator suitable with CMOS process and its characteristics)

  • 정귀상;이병철
    • 센서학회지
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    • 제19권3호
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    • pp.209-213
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    • 2010
  • This paper describes the fabrication and characteristics of AlN piezoelectric MPG(micro power generator). The micro energy harvester was fabricated to convert ambient vibration energy to electrical power as a AlN piezoelectric cantilever with Si proof-mass. To be compatible with CMOS process, AlN thin film was grown at low temperature by RF magnetron sputtering and micro power generators were fabricated by MEMS technologies. X-ray diffraction pattern proved that the grown AlN film had highly(002) orientation with low value of FWHM(full width at the half maximum, $\theta=0.276^{\circ}$) in the rocking curve around(002) reflections. The implemented harvester showed the $198.5\;{\mu}m$ highest membrane displacement and generated 6.4 nW of electrical power to $80\;k{\Omega}$ resistive load with $22.6\;mV_{rms}$ voltage from 1.0 G acceleration at its resonant frequency of 389 Hz. From these results, the AlN piezoelectric MPG will be possible to suitable with the batch process and confirm the possibility for power supply in portable, mobile and wearable microsystems.

압전 발전기를 이용한 WBAN/USN용 자기유지 시스템 구현 (Self-Sustaining System Using Piezoelectric Power Generator for WBAN/USN Applications)

  • 노형환;박준석;김형석
    • 정보통신설비학회논문지
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    • 제8권1호
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    • pp.40-46
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    • 2009
  • This paper presents a self-sustaining system, and an effective method in enhancing overall energy efficiency. The proposed system consists of the two major nodes: a slave node, which contains the environment information (e.g., temperature, humidity, etc.); and a master node, which communicates with the slave nodes, and transmit the slave node's information to users. All slave nodes are under control of the master node. Each slave node uses two power sources: the piezoelectric power generator (PPG); and the continuous wave from the master node. The paper highlights the basic operational principle, each node's specifications, and experimental data for performance verification. The two nodes successfully communicate each other in a range of 3.3m (maximal range), where the user's computer is wired the master node.

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집적화에 적합한 진동형 AlN 압전 마이크로 발전기의 설계와 해석 (Design and analysis of AlN piezoelectric micro generators suitable with integration)

  • 이병철;정귀상
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2010년도 하계학술대회 논문집
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    • pp.239-239
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    • 2010
  • This paper describes the design and analysis of AlN piezoelectric micro generator. The generator was designed to convert ambient vibration energy to electrical power as a AlN piezoelectric material compatible with integataion process. From the simulation results, the resonance frequency of designed model is about 360 Hz and analyzed the bending mode, displacement and expectation output.

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충격에너지를 활용한 압전 발전기의 특성을 이해하기 위한 실험 연구 (A Experimental Study to Understand of a Characteristics of a Piezo-Generator using Impact Energy)

  • 이재준;문학룡;권수안;류승기
    • 대한토목학회논문집
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    • 제31권5D호
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    • pp.689-695
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    • 2011
  • 본 논문에서는 도로공간에서 전력 생성이 가능한 신재생 에너지 기술들 중에서 압전효과를 활용하는 방법에 대한 연구를 수행하였다. 도로공간을 주행하는 수많은 차량을 이용하여 전력을 생성할 수 있는 신재생에너지 기술 연구의 일환으로, 외부의 충격하중을 전기에너지로 바꾸어 주는 압전효과를 이용하여 도로공간에 적용가능한 압전발전기를 개발하기 위한 기초연구를 수행하였다. 압전세라믹을 이용한 압전발전 수확기를 개발하기 위한 충격하중에 따른 특성 실험을 하였다. 압전발전기 형상 개발을 위해 충격하중 전달 방법, 충격흡수에 따른 압전세라믹의 발전 특성, 충격하중의 종류에 따른 압전 발전 수확기의 전압 발전 특성을 비교분석 하였다.

압전 후막의 전단 변형을 이용한 나선형 MEMS 발전기 (A Novel Spiral Type MEMS Power Generator with Shear Mode Piezoelectric Thick Film)

  • 송현철;김상종;문희규;강종윤;윤석진
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2008년도 추계학술대회 논문집 Vol.21
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    • pp.219-219
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    • 2008
  • Energy harvesting from the environment has been of great interest as a standalone power source of wireless sensor nodes for ubiquitous sensor networks (USN). There are several power generating methods such as thermal gradients, solar cell, energy produced by human action, mechanical vibration energy, and so on. Most of all, mechanical vibration is easily accessible and has no limitation of weather and environment of outdoor or indoor. In particular, the piezoelectric energy harvesting from ambient vibration sources has attracted attention because it has a relative high power density comparing with other energy scavenging methods. Through recent advances in low power consumption RF transmitters and sensors, it is possible to adopt a micro-power energy harvesting system realized by MEMS technology for the system-on-chip. However, the MEMS energy harvesting system hassome drawbacks such as a high natural frequency over 300 Hz and a small power generation due to a small dimension. To overcome these limitations, we devised a novel power generator with a spiral spring structure. In this case, the energy harvester has a lower natural frequency under 200 Hz than a normal cantilever structure. Moreover, it has higher an energy conversion efficient because shear mode ($d_{15}$) is much larger than 33 mode ($d_{33}$) and the energy conversion efficiency is proportional to the piezoelectric constant (d). We expect the spiral type MEMS power generator would be a good candidate as a standalone power generator for USN.

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컨베이어 진동을 이용한 IDE 적층 압전 캔틸레버 발전 소자의 무선 센서 응용 연구 (A Study on the Characteristics of Wireless Sensor Powered by IDE Embedded Piezoelectric Cantilever Generators Using Conveyor Vibration)

  • 김창일;이민선;조정호;백종후;장용호;최범진;손천명;서덕기;정영훈
    • 한국전기전자재료학회논문지
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    • 제29권12호
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    • pp.769-775
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    • 2016
  • Characteristics of a wireless sensor powered by the IDE (interdigitated electrode) embedded piezoelectric cantilever generator were analyzed in order to evaluate its potential for use in wireless sensor applications. The IDE embedded piezoelectric cantilever was designed and fabricated to have a self-resonance frequency of 126 Hz and acceleration of 1.57 G, respectively, for the mechanical resonance with a practical conveyor system in a thermal-power plant. It produced maximum output power of 2.81 mW under the resistive load of $160{\Omega}$ at 126 Hz. The wireless sensor module is electrically connected to a rectifier capacitor with capacity of 0.68 farad and 3.8 V for power supply by the piezoelectric cantilever generator. The unloaded capacitor could be charged as a rate of approximately $365{\mu}V/s$ while the capacitor exhibited that of 0.997 mV/min. during communication under low duty cycle of 0.2%. Therefore, it is considered that the fabricated IDE embedded piezoelectric cantilever generator can be used for wireless sensor applications.

딥코팅에 의한 실크 피브로인막으로 제조한 바이오 압전발전기 (Bio-Piezoelectric Generator with Silk Fibroin Films Prepared by Dip-Coating Method)

  • 김민수;박상식
    • 한국전기전자재료학회논문지
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    • 제34권6호
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    • pp.487-494
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    • 2021
  • Piezoelectric generators use direct piezoelectric effects that convert mechanical energy into electrical energy. Many studies were attempted to fabricate piezoelectric generators using piezoelectrics such as ZnO, PZT, PVDF. However, these various inorganic/organic piezoelectric materials are not suitable for bio-implantable devices due to problems such as brittleness, toxicity, bio-incompatibility, bio-degradation. Thus, in this paper, piezoelectric generators were prepared using a silk fibroin film which is bio-compatible by dip-coating method. The silk fibroin films are a mixed state of silk I and silk II having stable β-sheet type structures and shows the d33 value of 8~10 pC/N. There was a difference in output voltages according to the thickness. The silk fibroin generators, coated 10 times and 20 times, revealed the power density of 16.07 μW/cm2 and 35.31 μW/cm2 using pushing tester, respectively. The silk fibroin generators are sensitive to various pressure levels, which may arise from body motions such as finger tapping, foot pressing, wrist shaking, etc. The silk fibroin piezoelectric generators with bio-compatibility shows the applicability as a low-power implantable piezoelectric generator, healthcare monitoring service, and biotherapy devices.