• 제목/요약/키워드: Energy-Harvesting System

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도어의 회전력을 이용한 에너지 획득 시스템 개발 (Development of the Energy Harvesting System Using Door Torque)

  • 김진수
    • 한국산학기술학회논문지
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    • 제12권5호
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    • pp.2048-2053
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    • 2011
  • 본 논문에서는 도어의 회전운동에 의해서 발생하는 기계에너지를 전기에너지로 변환시켜 에너지를 획득하는 시스템을 제안한다. 에너지를 획득하는 방법으로 2종류의 에너지 하베스터을 논의한다. 첫 번째, 도어의 회전축과 발전장치의 축을 기어장치로 직접 연결하여 발전하는 기어 축결합 에너지 하베스터, 두 번째로는 도어 선단을 발전장치의 스트링으로 연결하여 발전하는 스파이럴스프링 에너지 하베스터이다. 이 2종류의 하베스터를 제작하여 실험을 수행하며, 이 결과를 통해서 제안한 에너지 하베스터의 유효성을 나타낸다.

벌집형 압전 발전 소자의 구동방식에 따른 출력 특성 (A Study on the Generating Characteristics Depending on Driving System of a Honeycomb Shaped Piezoelectric Energy Harvester)

  • 정성수;강신출;박태곤
    • 한국전기전자재료학회논문지
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    • 제28권2호
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    • pp.69-74
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    • 2015
  • Recently, energy harvesting technology is increasing due to the fossil fuel shortages. Energy harvesting is generating electrical energy from wasted energies as sunlight, wind, waves, pressure, and vibration etc. Energy harvesting is one of the alternatives of fossil fuel. One of the energy harvesting technologies, the piezoelectric energy harvesting has been actively studied. Piezoelectric generating uses a positive piezoelectric effect which produces electrical energy when mechanical vibration is applied to the piezoelectric device. Piezoelectric energy harvesting has an advantage in that it is relatively not affected by weather, area and place. Also, stable and sustainable energy generation is possible. However, the output power is relatively low, so in this paper, newly designed honeycomb shaped piezoelectric energy harvesting device for increasing a generating efficiency. The output characteristics of the piezoelectric harvesting device were analyzed according to the change of parameters by using the finite element method analysis program. One model which has high output voltage was selected and a prototype of the honeycomb shaped piezoelectric harvesting device was fabricated. Experimental results from the fabricated device were compared to the analyzed results. After the AC-DC converting, the power of one honeycomb shaped piezoelectric energy harvesting device was measured 2.3[mW] at road resistance 5.1[$K{\Omega}$]. And output power was increased the number of harvesting device when piezoelectric energy harvesting device were connected in series and parallel.

스마트 비디오 디바이스를 위한 에너지 하비스팅 및 프로파일링 시스템 (An Energy Harvesting and Profiling System for Smart Video Devices)

  • 강두식;김준식;박건우;이명진
    • 한국항행학회논문지
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    • 제21권1호
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    • pp.99-106
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    • 2017
  • 본 논문에서는 배터리 외에 별도의 전력원이 없거나 전력이 부족한 사물인터넷 환경에서 스마트 비디오 디바이스에 에너지 공급을 위한 에너지 하비스팅 및 프로파일링 시스템을 설계한다. 에너지 하비스팅 모듈은 태양전지판에서 하비스팅 된 태양광 에너지를 스마트 비디오 디바이스에 전달하고, 에너지 프로파일링 모듈은 디바이스 내부 배터리 유출 전류와 전압, 프로세스 소비 에너지를 측정하고 이를 이용하여 에너지 하비스팅 모듈로부터 디바이스 내부로 유입된 에너지와 디바이스 내부 소비 에너지를 계산한다. 실제 환경에서 측정한 하비스팅 된 에너지를 기상청이 제공하는 지역 일사량으로부터 계산한 에너지와의 비교를 통해 설계한 에너지 하비스팅 및 프로파일링 시스템의 적합성을 검증한다. 설계한 에너지 하비스팅 및 프로파일링 시스템은 지속 가능한 스마트 비디오 디바이스나 사물인터넷용 센서 설계에 활용될 수 있다.

Dynamic Power Management Structure for Energy Harvesting Pervasive Computing System

  • Bae, Hyeoungho;Kim, Dong-Sung
    • 대한임베디드공학회논문지
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    • 제1권1호
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    • pp.1-7
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    • 2006
  • In this paper, a novel power management structure for an energy harvesting pervasive system is proposed. The system considers the power state of each subsystem to assign proper power sources. The switch matrix structure utilizes each power source to reduce the peak current of the battery. The power management structure can be interfaced to an embedded system power supply without significant design change.

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MATLAB/Simulink를 이용한 오프그리드형 고효율 태양광 충전 시스템 설계 (Design of an Off Grid type High efficiency Solar charging system Using MATLAB/Simulink)

  • 미흐렛 가아브레슬라세 마루;김민;변기식;김관형
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2017년도 춘계학술대회
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    • pp.735-737
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    • 2017
  • An Off grid or remote solar electric systems are an energy supply to our home or to our companies without the utility of Grid at all. Off grid solar systems are very important for those who live in remote locations especially for developing countries where getting the electric grid is extremely expensive, inconvenient or for those who doesn't need to pay a monthly bill with the electric bill in general. The main critical components of any solar power system or renewable energy harvesting systems are the energy storage systems and its charge controller system. Energy storage systems are the essential integral part of a solar energy harvesting system and in general for all renewable energy harvesting systems. To provide an optimal solution of both high power density and high energy density at the same time we have to use hybrid energy storage systems (HESS), that combine two or more energy storage technologies with complementary characteristics. In this present work, design and simulation we use two storage systems supercapacitor for high power density and lithium based battery for high energy density. Here the system incorporates fast-response supercapacitors to provide power to manage solar smoothing and uses a battery for load shifting. On this paper discuss that the total energy throughout of the battery is much reduced and the typical thermal stresses caused by high discharge rate responses are mitigated by integrating supercapacitors with the battery storage system. In addition of the above discussion the off grid solar electric energy harvesting presented in this research paper includes battery and supercapacitor management system, MPPT (maximum power point tracking) system and back/boost convertors. On this present work the entire model of off grid electric energy harvesting system and all other functional blocks of that system is implemented in MATLAB Simulink.

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Interference Management Algorithm Based on Coalitional Game for Energy-Harvesting Small Cells

  • Chen, Jiamin;Zhu, Qi;Zhao, Su
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제11권9호
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    • pp.4220-4241
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    • 2017
  • For the downlink energy-harvesting small cell network, this paper proposes an interference management algorithm based on distributed coalitional game. The cooperative interference management problem of the energy-harvesting small cells is modeled as a coalitional game with transfer utility. Based on the energy harvesting strategy of the small cells, the time sharing mode of the small cells in the same coalition is determined, and an optimization model is constructed to maximize the total system rate of the energy-harvesting small cells. Using the distributed algorithm for coalition formation proposed in this paper, the stable coalition structure, optimal time sharing strategy and optimal power distribution are found to maximize the total utility of the small cell system. The performance of the proposed algorithm is discussed and analyzed finally, and it is proved that this algorithm can converge to a stable coalition structure with reasonable complexity. The simulations show that the total system rate of the proposed algorithm is superior to that of the non-cooperative algorithm in the case of dense deployment of small cells, and the proposed algorithm can converge quickly.

원격 에너지 저장소를 가진 이동 센서 네트워크를 위한 에너지 수확 체계 (Energy Harvesting Framework for Mobile Sensor Networks with Remote Energy Stations)

  • 김성우;이종민;권순각
    • 제어로봇시스템학회논문지
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    • 제15권12호
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    • pp.1184-1191
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    • 2009
  • Energy harvesting from environment can make the energy constrained systems such as sensor networks to sustain their lifetimes. However, environmental energy is highly variable with time, location, and other factors. Unlike the existing solutions, we solved this problem by allowing the sensor nodes with mobilizer to move in search of energy and recharge from remote energy station. In this paper we present and analyze a new harvesting aware framework for mobile sensor networks with remote energy station. The framework consists of energy model, motion control system and data transfer protocol. Among them, the objective of our data transfer protocol is to route a data packet geographically towards the target region and at the same time balance the residual energy and the link connectivity on nodes with energy harvesting. Our results along with simulation can be used for further studies and provide certain guideline for realistic development of such systems.

보행 시 팔의 교차 운동을 이용한 에너지 하베스팅 재킷 디자인 개발 (Development of Outdoor Jacket Design using Energy Harvesting System by Arm Swing Motion during Walking)

  • 이혜원;이민선;서성은;노정심
    • 한국의류산업학회지
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    • 제21권3호
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    • pp.300-307
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    • 2019
  • This study develops a user centered outdoor jacket capable of energy harvesting based on consumer needs. Jackets are designed for typical outdoor activities such as hiking, trekking, and climbing, integrated with an energy harvesting module that can generate electric power from arm swing in outdoor and daily life walking. Textile based energy generators developed by the previous research of Lee & Roh (2018) were used. A prototype was created based on the arm swing motion experiment for location options and energy harvesting system functions, the simulation by the design sketch, and evaluation of the wearing test by experts. In-depth interviews were later conducted for the prototype with 10 outdoor experts to derive the optimal location of an energy harvesting system in three ways, and the prototype was revised to 5 styles that reflected reviews by experts on function and appearance. Research indicated that the energy harvesting jacket design signifies a user-centered design based on expert interviews and usability evaluation as well as previous research on energy generation and storage device. The jacket is convenient because it combines an energy generator in an optimal position to maximize energy generation with a storage and charging device that can be inserted into various position options for accessibility.

압전 에너지 하베스팅을 이용한 신발용 발열 시스템 개발 (Development of Shoe-heating System based on Piezoelectric Energy Harvesting)

  • 이승진;이상웅;신희근;김기만;최성대
    • 한국기계가공학회지
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    • 제18권7호
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    • pp.48-55
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    • 2019
  • Soldiers have been exposed to the risk of chilblains in cold winters. Recent studies have described sensors and IOT devices that use independent power sources based on piezoelectric energy harvesting. Therefore, the heated shoes with an independent power source have been developed. For the application of energy harvesting to shoes, it is necessary to develop a unique harvester by considering human gait characteristics. Energy harvesters and ceramics were designed and fabricated in this study. The performances of these harvesters and ceramics were evaluated experimentally. Then, the harvesters and ceramics with superior performance were selected and applied to the system. Thereafter, the heating and charging performance of the system was tested under real walking conditions. The results show that the developed system can generate adequate energy to charge the battery and heat the shoes.

압전 필름의 압전정 효과를 이용한 에너지 저장 시스템에 관한 연구 (Study on the Energy Harvesting System Using Piezoelectric Direct Effect of Piezo Film)

  • 최범규;이우훈
    • 한국정밀공학회지
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    • 제25권9호
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    • pp.78-85
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    • 2008
  • Piezoelectric materials have been investigated as vibration energy converters to power wireless devices or MEMS devices due to the recent low power requirements of such devices and the advancement in miniaturization technology. Piezoelectric power generation can be an alternative to the traditional power source-battery because of the presence of facile vibration sources in our environment and the potential elimination of the maintenance required for large volume batteries. This paper represents the new power source which supplies energy device node. This system, called "energy harvesting system", with piezo materials scavenges extra energy such as vibration and acceleration from the environment. Then it converts the mechanical energy scavenged to electrical energy for powering device This paper explains the properties of piezo material through theoretical analysis and experiments The developed system provides a solution to overcome the critical problem of making up wireless device networks.