• Title/Summary/Keyword: Wireless Power Transmission

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A Power-Aware Transmission Mechanism based on the Retransmission and Congestion Control in Wireless Networks (무선 환경에서 재전송 및 혼잡 제어에 기반한 저전력 전송 기법)

  • 김태현;차호정
    • Proceedings of the Korean Information Science Society Conference
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    • 2004.04a
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    • pp.526-528
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    • 2004
  • 본 논문은 유무선 환경에서 TCP를 이용한 데이터 전송 시 에이젼트를 이용하여 패킷 손실의 원인을 분석, 무선 링크에서 발생한 패킷 손실에 대해서는 혼잡 윈도우 크기를 유지하고, 유선 링크에서 발생한 패킷 손실에 대해서는 지역 재전송을 수행하는 저 전력 전송기법을 제안한다. 제안하는 저 전력 전송기법은 전송 후 WNIC를 저 전력 모드로 전환시킴으로써 WNIC 전력소비를 최소화한다. NS2 시뮬레이션 결과 기존 TCP 보다 무선 링크에서 에러 발생시 67~177(%) 성능향상과 22~44(%) 에너지 감소효과를 보였고, 유선 링크에서 에러 발생시 3~22(%)의 성능 향상과 2~13(%) 에너지 감소 효과를 나타냈다.

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An Energy Model for IEEE 802.11b based on Transmission Rate (전송률에 기반한 IEEE 802.l1b 에너지 모델)

  • 김태현;차호정
    • Proceedings of the Korean Information Science Society Conference
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    • 2004.10c
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    • pp.124-126
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    • 2004
  • 본 논문은 CAM(Constant Awake Mode), 및 PSM(Power Saving Mode)을 지원하는 IEEE 802.l1b[1] Infrastructure 환경에서 전송 프로토콜이 이동기기의 WNIC(Wireless Network Interface Card) 에너지 소비에 미치는 영향을 분석하고 단위 시간 동안 전송되는 데이터 양에 기반한 IEEE 802.l1b WNIC 에너지 모델을 제안한다. 제안하는 에너지 모델은 IEEE 802.l1b 환경에서 CAM 및 PSM 모드를 사용할때, 실제 측정한 값을 기반으로 설계되었다. 제안된 에너지 모델은 실험을 통하여 정확성을 검증하고, IEEE 802.l1b를 기반으로한 저전력 통신 관련 연구에서 시뮬레이션 시 사용 가능한 에너지 모델임을 밝힌다.

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Active Implantable Device Technology Trend: BCI Application Focus (능동형 임플란터블 디바이스 기술동향: BCI 응용 중심)

  • Lee, S.Q.;Byun, C.W.;Kim, Y.G.;Park, H.I.
    • Electronics and Telecommunications Trends
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    • v.32 no.6
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    • pp.27-39
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    • 2017
  • A variety of medical devices are utilized to repair or help injured body functions after accidental injury(such as a traffic accident), population aging, or disease. Such medical devices are being actively researched and developed in portable form, skin patchable type, and further, implantable form. In the future, active implantable medical devices for neuro and brain sciences are expected to be developed. Active implantable medical devices that detect brain signals and control neurology for a wider understanding of human cognition and nerve functions, and for an understanding and treatment of various diseases, are being actively pursued for future use. In this paper, the core elements of implantable devices that can be applied to neuro and brain sciences are classified into electrode technologies for bio-signal acquisition and stimulation, analog/digital circuit technologies for signal processing, human body communication technologies, wireless power transmission technologies for continuous device use, and device integration technologies to integrate them. In each chapter, the latest technology development trends for each detailed technology field are reviewed.

Design of dipole Antenna using Split Ring Resonator(SRR) (분할고리공진기를 이용한 다이폴 안테나 설계)

  • Yu, Dong-gyun;Kim, Yong-seong;Lim, Yong-seok
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2018.10a
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    • pp.526-528
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    • 2018
  • This paper proposes a small, flexible dipole antenna for wireless power transmission of smart devices in a Wi-Fi environment. The proposed antenna is a mini-dipolar antenna structure with a split ring resonator in the center and is a small dipole antenna with a size of 32mm. The split ring resonator dipole antenna showed a reduction of about 20% compared to the same size of the dipole antenna.

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A study on the RF-DC Conversion Efficiency of Microstrip Patch Rectenna (Microstrip Patch 형 Rectenna의 변환효율 분석에 관한 연구)

  • Park, Yang-Ha;Youn, Dong-Gi;Kim, Kwan-Ho;Rhee, Young-Chul
    • Proceedings of the KIEE Conference
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    • 2000.07c
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    • pp.2177-2179
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    • 2000
  • We designed and manufactured micros trip patch antenna mainly used in the Rectenna and then analysed RF-DC conversion efficiency of wireless power transmission system. We analyse conversion efficiency of load, direction of linear and dual polization rectenna. We found that the maximum efficiency would be about 70% of load and direction in patch type. In conclusion, we found that total conversion efficiency is 64%$\sim$71% in patch Rectenna.

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Technique of wireless power transmission using microwave (마이크로규론 이용한 무선전력전송 기술)

  • Yang, Sang-Yeol;Kim, Jae-Hwan;Song, Kyo-D.
    • Proceedings of the KIEE Conference
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    • 2006.10a
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    • pp.131-132
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    • 2006
  • 무선전력송신은 로봇, 우주 항공, 정보통신, MEMS 등 디바이스 경량화 및 운동성 향상 등의 요소가 중요하게 작용하는 분야에 도움을 줄 수 있다. 특히 정찰 및 탐사에 쓰일 초경량의 로봇을 위해서는 무선전력송신 기술은 상당히 중요한 개념이 된다. 본 논문에서는 유연 박막 기판과 다이폴 안테나, 그리고 쇼트키다이오드를 이용하여 전송된 마이크로파를 직류전력으로 변환시키는 렉테나(rectenna)에 대해서 소개하고 제조방과 성능평가를 통하여서 응용 개발의 가능성에 대해서 논한다.

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Overview of LED Communication Networks

  • Huynh, Vu Van;Le, Nam-Tuan;Uddin, Muhammad Shahin;Choi, Sun-Woong;Jang, Yeong-Min
    • Information and Communications Magazine
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    • v.28 no.12
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    • pp.50-60
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    • 2011
  • Visible light communication(VLC) is one type of short-range, optical, and wireless communication system utilizing light emitting diode(LED) and laser diode(LD) as optical source. In a VLC system, visible light is used as a transmission medium and used to illuminate. Using VLC has a lot of advantages: it is harmless to human body; it transmits with high power, and it has excellent security, a high data rate, and a license free frequency band. With such a unique blend of communication and illumination in one system, the most common application would be an indoor environment. We aim at reviewing key issues in VLC network such as : FOV(field of view), priority MAC, cooperative MAC, link switching, LED-ID technique, cell site diversity, and link recovery.

Development of Portable Bio-signal Measurement System using Bluetooth for 24-hours Continuous Health Monitoring (24시간 건강상태 모니터링을 위한 Bluethooth를 사용한 소형 저전력 휴대형 Bio-signal 측정 장치를 개발)

  • 정현권;송길섭;나승유;이희영
    • Proceedings of the IEEK Conference
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    • 2001.06e
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    • pp.81-84
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    • 2001
  • This paper presents a potable bio-signal measurement system using Bluetooth for the 24-hours continuous health state monitoring of the elderly and the disabled. The measurement system has the functions of acquisition of various bio-signals, wireless data transmission and adjustment of parameters such as gain and cut-off frequency. This measurement system is designed according to the international specifications of the recommendation of AAMI (Association for the Advancement of Medical Instrumentation). The design targets of the developing system about volume and power consumption are 20x30x5mm$^3$ and 8mW.

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Design of RE-DC conversion circuit for the batteryless Transponder

  • Jin, In-su;Yang, Kyeong-rok;Ryu, Hyoung-sun;Kim, Yang-mo
    • Proceedings of the IEEK Conference
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    • 2000.07b
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    • pp.1001-1004
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    • 2000
  • RFID system is applied to identify, locate and track people, cars, animals. In RFID system, the passive transponder without battery has some benefits than active transponder, such as no restriction in battery exchange and in battery’s life. But it needs auxiliary RF-DC conversion circuit. RF-DC conversion circuit originated from Wireless Power Transmission (WPT). In this paper, RF-DC conversion circuit consists of a microstrip patch antenna and impedance matching circuit, Cock-croft Walton circuit. And RF-DC conversion circuits have two kinds of T-type and Cross-type impedance matching circuits.

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RF Transceiver Design for Impulse Radio UWB System (임펄스 UWB 시스템을 위한 RF 송수신기 설계)

  • Park, Joo-Ho;Oh, Mi-Kyung;Oh, Jung-Yeol;Kil, Min-Su;Kim, Jae-Young
    • IEMEK Journal of Embedded Systems and Applications
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    • v.4 no.1
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    • pp.29-34
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    • 2009
  • In this paper, we design RF transceiver architecture and building blocks for impulse radio UWB system. Impulse radio UWB signal occupies the wide frequency band which is very low transmission power. So, it can minimize the interference effect with the other system. Using UWB technology, we obtain position awareness service. Therefore, we describe the RF transceiver architecture of direct conversion receiver and define the requirement of RF transceiver. Moreover, we implement a prototype RF transceiver based on the presented standard and verify a function and performance through the wireless data communication and ranging test.

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