• Title/Summary/Keyword: Reassembly Module

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Design of Reassembly Unit Modular Wearable Device (단위 모듈 기반의 재조립 가능한 웨어러블 디바이스 구조 설계)

  • Lee, Geo-Yun;Kang, Soon-Ju
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.41 no.3
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    • pp.338-346
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    • 2016
  • Wearable Device has various constraint about battery power consumption, size, weight, etc, because the devices is worn and operated by person and provide services. So, if a device includes too many functions, it dose not satisfies the constraint and lose price competitiveness due to become expensive. Therefore we suggest that make reassembly Unit Modular Device witch has common used functions in wearable devices and user can receive various services to reassemble Unit Modules. It is comprised of frames and modules. Each module has various functions. Each frames help module to communicate each modules. To realize this device, we design to guarantee each services to use necessary modules, to give priority to modules depending on the important of the task, to set that does not use to low energy mode.

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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IP Design of ATM AAL Module for B-ISDN (B-ISDN용 ATM AAL 계층의 IP 설계)

  • 손승일;김형준
    • Proceedings of the IEEK Conference
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    • 2001.06b
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    • pp.261-264
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    • 2001
  • In this paper, we design IP of ATM AAL layer for B-ISDN. The designed ATM AAL module supports the function for AAL type 0, AAL type 3/4, AAL type 5. The designed IP provides for automatic CRC-32 and CRC-10 for AAL type and AAL type 3/4. Also our IP inserts and extracts the header and trailer for each type automatically. After HDL description, it is verified by the simulation. The designed U is implemented in Xilinx FPGA. Rx AAL module operates at 35MHz and Rx AAL module operates at 50MHz. The designed IP can be applicable in high-speed ATM SAR(Segmentation and Reassembly) chip.

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