• 제목/요약/키워드: vibration-powered generator

검색결과 9건 처리시간 0.028초

진동모니터링을 위한 자가진동발전기의 개발 (Development of Vibration Powered Generator for Vibration Monitoring)

  • 김재민;최남섭
    • 한국소음진동공학회:학술대회논문집
    • /
    • 한국소음진동공학회 2003년도 춘계학술대회논문집
    • /
    • pp.434-441
    • /
    • 2003
  • This paper presents a generator for stand-alone vibration monitoring system of bridge structure based on ambient vibration of bridge. In this paper, a novel electric power generator which has minimum effect of armature reaction is proposed. The related mechanical and electrical design equations are obtained and a pilot generator has been implemented. In addition, the charging system for extremely low generator current is discussed, and some improvements are identified for the system. This investigation reveals that diode characteristics of rectifier is dominant factor in the charging process. Finally, both the simulation, which uses real measurement data of the Namhae bridge as input of the pilot generator, and indoor test are carried out. The results showed the applicability and effectiveness of the stand-alone vibration powered generator.

  • PDF

Self-reliant wireless health monitoring based on tuned-mass-damper mechanism

  • Makihara, Kanjuro;Hirai, Hidekazu;Yamamoto, Yuta;Fukunaga, Hisao
    • Smart Structures and Systems
    • /
    • 제15권6호
    • /
    • pp.1625-1642
    • /
    • 2015
  • We propose an electrically self-reliant structural health monitoring (SHM) system that is able to wirelessly transmit sensing data using electrical power generated by vibration without the need for additional external power sources. The provision of reliable electricity to wireless SHM systems is a highly important issue that has often been ignored, and to expand the applicability of various wireless SHM innovations, it will be necessary to develop comprehensive wireless SHM devices including stable electricity sources. In light of this need, we propose a new, highly efficient vibration-powered generator based on a tuned-mass-damper (TMD) mechanism that is quite suitable for vibration-based SHM. The charging time of the TMD generator is shorter than that of conventional generators based on the impedance matching method, and the proposed TMD generator can harvest 16 times the amount of energy that a conventional generator can. The charging time of an SHM wireless transmitter is quantitatively formulated. We conduct wireless monitoring experiments to validate a wireless SHM system composed of a self-reliant SHM and a vibration-powered TMD generator.

건전도 감시용 자립형 계측유닛을 위한 진동발전시스템 (Vibration Powered Generator System for Stand-Alone Health Monitoring Sensor Unit)

  • 최남섭;김재민
    • 한국지진공학회논문집
    • /
    • 제7권2호
    • /
    • pp.85-92
    • /
    • 2003
  • 본 논문에서는 교량의 건전도 감시용 자립형 계측유닛을 위한 교량의 상시진동을 이용한 진동발전시스템을 제시하였다. 본 연구에서는 전기자 반작용의 영향을 최소화한 새로운 구조의 진동발전기를 제안하고, 기계적 및 전기적인 설계식을 유도한 다음, 시험용 진동발전기를 제작하였다. 또한, 매우 작은 발전 전류의 축전시스템에 대하여 고찰하고 개선점을 도출하였다. 축전시스템에 대한 고찰 결과, 정류기에 사용된 다이오드 특성이 충전과정에서 지배적임을 밝혔다. 마지막으로, 진동발전시스템 모델에 실측 남해대교 가속도 데이터를 적용한 시뮬레이션과 실내 실험을 수행하였고, 제작된 시험용 진동발전기의 적용성과 효용성을 확인할 수 있었다.

산업전기 설비의 상태 감시를 위한 자가 발전 센서 시스템의 설계 (Design of Self-Powered Sensor System for Condition Monitoring of Industrial Electric Facilities)

  • 이기창;강동식;전정우;황돈하;이주훈;홍정표
    • 대한전기학회:학술대회논문집
    • /
    • 대한전기학회 2005년도 학술대회 논문집 정보 및 제어부문
    • /
    • pp.264-266
    • /
    • 2005
  • Recently, on-line diagnosis methods through wired and wireless networks are widely adopted in the diagnosis of industrial Electric Facilities, such as generators, transformers and motors. Also smart sensors which includes sensors, signal conditioning circuits and micro-controller in one board are widely studied in the field of condition monitoring. This paper suggests an self-powered system suitable for condition-monitoring smart sensors, which uses parasitic vibrations of the facilities as energy source. First, vibration-driven noise patterns of the electric facilities are presented. And then, an electromagnetic generator which uses mechanical mass-spring vibration resonance are suggested and designed. Finally energy consumption of the presented smart sensor, which consists of MEMS vibration sensors, signal conditioning circuits, a low-power consumption micro-controller, and a ZIGBEE wireless tranceiver, are presented. The usefulness and limits of the presented electromagnetic generators in the field of electric facility monitoring are also suggested.

  • PDF

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
    • /
    • 제29권12호
    • /
    • pp.769-775
    • /
    • 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.

미소에너지 하베스팅용 적층 벤더 압전 소자 성능 연구 (Bender-type Multilayer Piezoelectric Devices for Energy Harvesting)

  • 정순종;김민수;김인성;송재성
    • 한국전기전자재료학회:학술대회논문집
    • /
    • 한국전기전자재료학회 2008년도 추계학술대회 논문집 Vol.21
    • /
    • pp.193-193
    • /
    • 2008
  • Wearable and ubiquitous micro systems will be greatly growing and their related devices should be self-powered in order to avoid the replacement of finite power sources, for example, by scavenging energy from the environment. With ever reducing power requirements of both analog and digital circuits, power scavenging approaches are becoming increasingly realistic. One approach is to drive an electromechanical converter from ambient motion or vibration. Vibration-driven generators based on electromagnetic, electrostatic and piezoelectric technologies have been demonstrated. Among various generator types proposed so far, piezoelectric generator possesses considerable potential in micro system. To overcome low mechanical-to-electric energy conversion, the piezoelectric device should activate in resonance mode in response to external vibration. Normally, the external vibration excretes at low frequency ranging 0.1 to 200 Hz, whereas the resonant frequencies of the devices are fixed as constant. Therefore, keeping their resonant mode in varying external vibration can be one of important points in enhancing the conversion efficiency. We investigated the possibility of use of multi-bender type piezoelectric devices. To match the external vibration frequency with the device resonant frequency, the various devices with different resonant frequency were chosen.

  • PDF

압전 재료를 이용한 진동에너지 변환 전력발생 시스템 해석 및 설계 (System Analysis and Design for a Vibration Converted Power Generator using Piezo Materials)

  • 금명훈;이승엽;고병식;김경호
    • 한국소음진동공학회:학술대회논문집
    • /
    • 한국소음진동공학회 2003년도 추계학술대회논문집
    • /
    • pp.1059-1066
    • /
    • 2003
  • A power generation system 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 agrees with the theoretical predictions. The system is shown to produce 2.53㎼ in average. Finally, we perform the optimal design for system variables to maximize output power.

  • PDF

적층형 압전 소자를 이용한 미소 에너지발생장치 (Small Energy Generator Using Multilayer Piezoelectric Devices)

  • 정순종;김민수;김인성;송재성
    • 한국전기전자재료학회:학술대회논문집
    • /
    • 한국전기전자재료학회 2007년도 추계학술대회 논문집
    • /
    • pp.261-261
    • /
    • 2007
  • Wearable and ubiquitous micro systems will be greatly growing and their related devices should be self-powered in order to avoid the replacement of finite power sources, for example, by scavenging energy from the environment. With ever reducing power requirements of both analog and digital circuits, power scavenging approaches are becoming increasingly realistic. One approach is to drive an electromechanical converter from ambient motion or vibration. Vibration-driven generators based on electromagnetic, electrostatic and piezoelectric technologies have been demonstrated. Among various generator types proposed so far, piezoelectric generator possesses considerable potential in micro system. To overcome low mechanical-to- electric energy conversion, the piezoelectric device should activate in resonance mode in response to external vibration. Normally, the external vibration excretes at low frequency ranging 0.1 to 200 Hz, whereas the resonant frequencies of the devices are fixed as constant. Therefore, keeping their resonant mode in varying external vibration can be one of important points in enhancing the conversion efficiency. We investigated the possibility of use of multi-bender type piezoelectric devices. To match the external vibration frequency with the device resonant frequency, the various devices with different resonant frequency were chosen. Under an external vibration acceleration of 0.1G at 120 Hz, the device exhibited a peak-to-peak voltage of 2.8 V and a power of 0.5 mw in resonance mode.

  • PDF

사용자 환경 모니터링을 위한 소형 자가발전 무선 데이터 송수신 시스템 개발 (Fabrication of Portable Self-Powered Wireless Data Transmitting and Receiving System for User Environment Monitoring)

  • 장순민;조수민;정윤수;김재형;김현수;장다연;라윤상;이동한;라문우;최동휘
    • Korean Chemical Engineering Research
    • /
    • 제60권2호
    • /
    • pp.249-254
    • /
    • 2022
  • 최근 반도체와 같은 정보통신 기술의 발전과 함께 사물인터넷(IoT) 기술 발전이 급격히 이루어지면서 센서와 무선 통신 기능을 내장하여 주변 사물 및 환경 조건을 감지 및 분석하여 대응하는 원격 환경 모니터링 기술이 주목받고 있다. 하지만, 기 개발된 원격 환경 모니터링 시스템은 모두 별도의 전원 공급 장치를 필요로 하기 때문에 시·공간적 기기 사용의 제한을 야기하여, 사용자의 불편함을 유발할 수 있다. 따라서, 본 연구에서는 생체 역학적 에너지의 역학적 특성이 고려된 기구학적 설계 기반 전자기 발전 소자(Electromagnetic generator, EMG)를 개발함으로써 이의 에너지 자립형 원격 환경 모니터링 구동을 위한 전원 공급 장치로써 활용한다. 낮은 진동 주기 및 큰 진폭 변화의 역학적 특성을 지닌 생체 역학적 에너지를 효과적으로 이용하기 위해 자석의 기구학적 배치를 통한 깨지기 쉬운 힘의 평형을 유도하는 Levitation-EMG (L-EMG)를 설계했다. 이를 통해, L-EMG는 외부 진동에 민감하게 반응하여 자석과 코일 간의 효과적인 상대 움직임을 야기하여 고품질 전기 에너지 공급을 가능하게 했다. 뿐만 아니라, 실제 환경 감지 센서와 무선 통신 모듈의 필요 전력을 최소화하기 위한 마이크로 컨트롤러(Micro control unit, MCU)를 구성하였으며, 내장기능 중 저전력모드(Sleep mode)를 접목하여 소비전력의 최소화 및 이의 구동시간 증가를 달성했다. 최종적으로 사용자의 편의성을 극대화하기 위해 휴대폰 어플리케이션을 구축하여 손쉽게 주변 환경 모니터링을 가능하게 했다. 따라서, 이번 연구는 생체역학적 에너지를 이용한 에너지 자립형 원격 환경 모니터링 구축 가능성을 검증할 뿐만 아니라, 더 나아가 별도의 외부 전원 없이 주변 환경 모니터링이 가능한 설계 방안을 제시할 수 있다.