• Title/Summary/Keyword: UDP based Transfer

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Analysis of Flow and Congestion control in USN (USN의 전송 계층 프로토콜에서 에러 및 흐름제어의 성능 평가)

  • Cha, Hyun-Soo;Kang, Chul-Kun;Yoo, Seung-Wha;Kim, Ki-Hyung
    • 한국정보통신설비학회:학술대회논문집
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    • 2008.08a
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    • pp.45-50
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    • 2008
  • Many applications of sensor network require connection to the Internet. The transmission protocol of traditional sensor network was designed within the sensor network itself. However, based on 6LoWPAN which can be accessed using IPv6, direct connection is possible between the sensor network and the TCP/IP network outside. Transmission of data in applications of sensor network falls into two main categories. One is a small packet that is periodically produced such as packet related to temperature and humidity. The other is a relatively large packet that brings about network overheads such as images. We investigated the conformance test and pros and cons of application data over the transmission protocol of Zigbee and 6LoWPAN. As a result, both Zigbee and 6LoWPAN have shown low rate of loss for periodic data and have in creased reliability of data transfer. When transmitting streaming image data, both ACK, non ACK mode of Zigbee and UDP of 6LoWPAN minimized transmission time but suffered the consequences of high packet loss. Even though TCP of 6LoWPAN required a long transmission time, we were able to confirm that no loss has occurred.

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Applying a Two-channel Video Streaming Technology Front and Rear Vehicle Wireless Video Monitoring System (2채널 영상 스트리밍 기술을 적용한 차량용 전. 후방 무선 영상 모니터링 시스템)

  • Na, HeeSu;Won, YoungJin;Yoon, JungGeun;Lee, SangMin;Ahn, MyeongIl;Kim, DongHyun;Moon, JongHoon
    • Journal of the Institute of Electronics and Information Engineers
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    • v.51 no.12
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    • pp.210-216
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    • 2014
  • In this paper, it was proposed to develop front and rear image monitoring system for vehicle that help a driver to cope with urgent situation about a dangerous element. When parking a vehicle, the risk factors to be formed by the dead zone can be resolved by using anterior and posterior cameras of the vehicle. In embedded system environment, a SoC(System on Chip) and two high-resolution CMOS (Complementary metal-oxide-semiconductor) image sensors were used to transfer two high-resolution image data through he TCP/ IP-based network. To transfer image data through he TCP/ IP-based network, the images received by two cameras were compressed by using H.264 and they were transmitted with wireless method(Wi-Fi) by using real-time transport protocol (Real-time Transport Protocol). Transmission loss, transmission delay and transmission limit were solved in wireless (Wi-Fi) environment and the bit-rate of two image data compressed by H.264 was adjusted. And the system for the optimal transmission in wireless (Wi-Fi) environment was materialized and experimented.