• Title/Summary/Keyword: IEEE 802.15.6

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A Study on the Healthcare based on the Smart Device (스마트 디바이스 기반의 헬스캐어에 관한 연구)

  • Park, Chun-Myoung
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2016.10a
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    • pp.838-839
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    • 2016
  • IEEE 802.15.4 is the standard wireless link technology for low power, low cost, but long lifetime applications including wireless sensor network (WSN). Currently, whether or not IP architecture should be used in WSN over its 802.15.4 link is under dispute. Such kind of arguments may last for a long time without some convincing experimental measurements of real case performances of IP over 802.15.4 implementation, and thus prevent the advance of related research. In RFC4944, IETF proposed the 6LoWPAN specification to enable IPv6 communication over low power, wireless personal area networks. We try to alleviate the dispute and make the direction clearer to the community so as to promote further valuable research in this topic.

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Transmission Power Control algorithm based link quality indicator at IEEE 802.15.4 wireless personal area network (IEEE 802.15.4 무선 PAN에서 링크 품질에 기반을 둔 Transmission Power Control 알고리즘)

  • Seo, Jung-Tae;Kim, Kwang-Jin;Son, Byung-Hee;Kwon, Young-Bin;Park, Jae-Hwa;Park, Ho-Hyun;Lee, Jung-Woo;Choi, Young-Wan
    • 한국정보통신설비학회:학술대회논문집
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    • 2009.08a
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    • pp.3-6
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    • 2009
  • IEEE 802.15.4 기반의 무선 PAN(WPAN: Wireless Personal Area Network)환경에서 기존에 제안된 전송 전력 제어(TPC: Transmission Power Control) 알고리즘은 수신 신호의 세기를 기반으로 반복 전송을 통하여 적합한 최소 전송 전력을 결정하는 방법으로 진행되어 왔다. 이러한 방법은 통신 채널의 변화가 잦은 지역에서는 재전송률이 높아지고 전송 품질이 떨어지는 단점을 가지고 있다. 따라서 본 논문에서는 IEEE 80215.4에서 제공하는 링크 품질 지표(LQI: Link quality indicator)값을 바탕으로 최소 전송 전력을 결정하여 재전송률을 줄이고, 통신 채널 변화에 보다 능동적으로 대응할 수 있는 새로운 전송 진력 제어 방법을 제안하고자 한다.

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Development of Fragmentation Management Simulator for 6LoWPAN (6LoWPAN 단편화 관리 기법 시뮬레이터 개발)

  • Seo, Hyun-Gon;Han, Jae-Il
    • Journal of the Korea Society for Simulation
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    • v.17 no.4
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    • pp.191-198
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    • 2008
  • 6LoWPAN (IPv6 Low-power Wireless Personal Area Network) is IPv6 packets transmission technology at Sensor network over the IEEE 802.15.4 Standard MAC and Physical layer. Adaptation layer between IP layer and MAC layer performs fragmentation and reassembly of packet for transmit IPv6 packets. RFC4944, IETF 6LoWPAN WG standard document define packet fragmentation and reassembly. In this paper, we propose the 6PASim (6LoWPAN Packet Simulator) to perform IPv6 packet fragmentation and reassembly for performance evaluation. The 6PASim consist of two parts. One is Packet_Transmit_module that makes IEEE 802.15.4 frames the IPv6 packet from upper layer, and transmit its. and the another is Packet_Receive_module that reassembles transferred frames and completes original IPv6 packets. we can evaluate frame transmit rate and amount of control message through 6PASim. The result of simulation shows the SRM (Selective Retransmission Method) scheme provider better performance than IRM (Immediate Retransmission Method) scheme.

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IEEE 802.15.8 피어 인지 통신 표준화 동향

  • Ju, Seong-Sun
    • Information and Communications Magazine
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    • v.33 no.10
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    • pp.17-23
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    • 2016
  • 본고에서는 저전력 단말이 infra 없이 device-to-device 로 주변 기기를 탐색하여 ad hoc으로 네트워크를 구성할 수 있는 피어 인지 통신용 (Peer Aware Communication: PAC) PHY와 MAC 개발을 목표로 하는 IEEE 802.15 Task Group 8의 표준화 동향을 소개하였다. IEEE 802.15 TG8은 2016년 6월 첫번째 Working Group Letter Ballot을 끝냈으며, RevCom 승인은 2017년 7월을 목표로 하고 있다.

Wireless Fieldbus for Networked Control Systems using LR-WPAN

  • Choi, Dong-Hyuk;Kim, Dong-Sung
    • International Journal of Control, Automation, and Systems
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    • v.6 no.1
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    • pp.119-125
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    • 2008
  • This paper examines the use of a wireless Fieldbus based on IEEE 802.15.4 MAC protocol. The superframe of IEEE 802.15.4 is applied to a transmission scheme of real-time mixed data. The transmission and bandwidth allocation scheme are proposed for real-time communication using a superframe. The proposed wireless Fieldbus protocol is able to transmit three types of data (periodic data, sporadic data, and non real-time messages), and guarantee realtime transmission simultaneously within a limited timeframe.

Design and Verification of IEEE 802.15.4 LR-WPAN 2.4GHz Base-band for Ubiquitous Sensor Network (유비쿼터스 센서 네트워크를 위한 IEEE 802.15.4 LR-WPAN 2.4GHz 베이스 밴드 설계 및 검증)

  • Lee Seung-Yerl;Kim Dong-Sun;Kim Hyun-Sick;Chung Duck-Jin
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.43 no.1 s.343
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    • pp.49-56
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    • 2006
  • This paper describes the design and the verification of IEEE 802.15.4 LR-WPAN 2.4GHz Physical layer for Ubiquitous Sensor Network(USN). We designed the Carrier Frequency Offset(CFO) compensation satisfied the frequency tolerance of IEEE 802.15.4 LR-WPAN and the adaptive matched filter that re-setting of the threshold for the symbol synchronization of the various USN environment. The multiplications is reduced 1/16 by this method each other at i, q phases and has 0.5dB performance improvement in detection probability. Proposed baseband system is designed with verilog HDL and implemented using FPGA prototype board.

Device Security Bootstrapping Mechanism on the IEEE 802.15.4-Based LoWPAN (IEEE 802.15.4 기반 LoWPAN에서의 디바이스 보안 설정 메커니즘)

  • Lee, Jong-Hoon;Park, Chang-seop
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.26 no.6
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    • pp.1561-1569
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    • 2016
  • As the use of the sensor device increases in IoT environment, the need for device security is becoming more and more important When a sensor device is deployed in IEEE 802.15.4-based LoWPAN, it has to perform the join operation with PAN Coordinator and the binding operation with another device. In the join and binding process, authentication and key distribution of the device are performed using the pre-distributed network key or certificate. However, the network key used in the conventional method has problems that it's role is limited to the group authentication and individual identification is not applied in certificate issuing. In this paper, we propose a secure join and binding protocol in LoWPAN environment that solves the problems of pre-distributed network key.

Improvement of IEEE 802.15.4b LR-WAPN Frequency Offset with Multiple Differential Filter (다중 차분 필터에 의한 IEEE 802.15.4b LR-WPAN 주파수 옵셋의 개선)

  • Cheng, Cha-Keon;Kang, Sung-Min
    • The Journal of the Korea Contents Association
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    • v.9 no.2
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    • pp.10-17
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    • 2009
  • This paper analyze the effect of frequency offset for the IEEE 802.15.4b LR-WPAN(Low-Rate Wireless Personal Area Network) with 915MHz bandwidth noncoherent DSSS O-QPSK based receiver system, and presents a compensation method with addition of differential filter to the system for compensation of frequency offset problem. DSSS PSSS-ASK and DSSS O-QPSK modulation techniques are accepted within the regularization of IEEE 802.15.4b. These new method can obtain 250kbps transmission rate. The DSSS O-QPSK modulation method that is used in this paper has no BER variation below 40ppm(frequency offset 36.6kHz), but if the offset frequency become high above 40ppm, then the system cannot have stable receiving condition due to worse BER. To solve this problem, we present a more stabilized receiver system at maximum frequency offset ${\pm}80ppm$ using MDDF unti a correlator of DSSS O-QPSK modulator. Moreover computer simulation results will be presented to evaluate the performance of the proposed algorithm unde various AWGN and frequency offset environment.

Implementation of IEEE 802.15.4a Software Stack for Ranging Accuracy Based on SDS-TWR (SDS-TWR 기반의 거리측정 정확도를 위한 IEEE 802.15.4a 소프트웨어 스택 구현)

  • Yoo, Joonhyuk;Kim, Hiecheol
    • Journal of Korea Society of Industrial Information Systems
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    • v.18 no.6
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    • pp.17-24
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    • 2013
  • The localization accuracy in wireless sensor networks using ranging-based localization algorithms is greatly influenced by the ranging accuracy. Software implementation of HAL(Hardware Abstraction Layer) and MAC(Medium Access Layer) should seamlessly deliver the raw performance of ranging-based localization provided by hardware capability fully to the applications without degrading the raw performance. This paper presents the design and implementation of the software stack for IEEE 802.15.4a which supports normal ranging mode of the Nanotron's NA5TR1 RF chip. The experiment results shows that average ranging error rate with our implementation is 24.5% for the normal mode of the SDS-TWR ranging scheme.

Performance Analysis of IEEE P802.15.3a Multi-band UWB Transceiver for DAC Quantization Error in Fading Channel (다중경로 페이딩 채널에서 DAC 양자화 오차에 대한 IEEE P802.15.3a 멀티밴드 UWB 송수신기 성능 분석)

  • 정성원;이승윤;임승호;박규호
    • Proceedings of the IEEK Conference
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    • 2003.11c
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    • pp.216-219
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    • 2003
  • In this paper, we present performance analysis of an IEEE P802.15.3a high rate wireless personal area network transceiver. This physical layer standard uses QOSK as its sub-channel modulation scheme and orthogonal frequency domain modulation (OFDM) for sub-bands. OFDM is used for each sub-band so that multi-path effects are absorbed by equalizer and guard, and fading can be approximately modeled as additive white Gaussian noise. In multi-band ultra-wideband system, DAC quantization error is important noise source since high resolution conversion cannot be used due to high power consumption. Simulation result shows that, to get 640-Mbps throughput, at least 5-bits precision is necessary to maintain bit-error rate under 10$\^$-2/, which can be lowered, with channel coding, to 10$\^$-6/ that is the bit-error rate required by IEEE 802.15 upper protocol layer, in 4-meter LOS fading channel.

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