• Title/Summary/Keyword: Forward Error Correction(FEC)

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Analysis of IEEE 802.11 Broadcast for Reliable Wi-Fi Broadcast (안정적 Wi-Fi 방송 서비스를 위한 무선 랜 전송 특성 분석)

  • Jung, Jae-Hyoun;Kim, Dong-Hyoun;Kim, Jong-Deok
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.36 no.8B
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    • pp.954-961
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    • 2011
  • To apply Wi-Fi technique to the Broadcast field, we have to study features of IEEE 802.11 Broadcast packet. IEEE 802.11 Broadcast technique cannot guarantee successful packet delivery than IEEE 802.11 Unicast. A promising solution to this problem is the use of FEC(Forward Error Correction) mechanisms. However, the adjustment of the FEC redundancy rate is not a trivial issue due to the dynamic wireless environment. In order to explore the above issues we conducted an experimental study of the packet loss behavior of the IEEE 802.11g protocol. In order to study, we implemented a broadcast test bed. Based on the experimental results, we provide guidelines on wireless lan parameters(packet size, transmission rate(11g), background traffic). From this experimental study, we provide FEC redundancy rate.

Monitoring-based Coordination of Network-adaptive FEC for Wireless Multi-hop Video Streaming (무선 멀티 홉 비디오 스트리밍을 위한 모니터링 기반의 네트워크 적응적 FEC 코디네이션)

  • Choi, Koh;Yoo, Jae-Yong;Kim, Jong-Won
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.36 no.2A
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    • pp.114-126
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    • 2011
  • Video streaming over wireless multi-hop networks(WMNs) contains the following challenges from channel fading and variable bandwidth of wireless channel, and it cause degradation of video streaming performance. To overcome the challenges, currently, WMNs can use Forward Error Correction (FEC) mechanism. In WMNs, traditional FEC schemes, E2E-FEC and HbH-FEC, for video streaming are applied, but it has long transmission delay, high computational complexity and inefficient usage of resource. Also, to distinguish network status in streaming path, it has limitation. In this paper, we propose monitoring-based coordination of network-adaptive hop-to-end(H2E) FEC scheme. To enable proposed scheme, we apply a centralized coordinator. The coordinator has observing overall monitoring information and coordinating H2E-FEC mechanism. Main points of H2E-FEC is distinguishing operation range as well as selecting FEC starting node and redundancy from monitored results in coordination. To verify the proposed scheme, we perform extensive experiment over the OMF(Orbit Measurement Framework) and IEEE 802.1la-based multi-hop WMN testbed, and we carry out performance improvement, 17%, from performance comparison by existing FEC scheme.

Performance Evaluation of Wireless Network based on Mobile Multi-hop (모바일 다중 홉 기반의 무선 네트워크의 성능 평가)

  • Roh, Jae-Sung;Kim, Wan-Tae
    • Journal of Advanced Navigation Technology
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    • v.12 no.6
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    • pp.634-639
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    • 2008
  • In mobile communication networks, the main power consumption is due to the actual transmissions power. Therefore, power efficiency network structures have gained considerable importance in mobile multi-hop systems and networks in recent years. In this paper, the performance of mobile multi-hop wireless system with M-QAM signal and forward error control (FEC) technique are analyzed The FEC technique uses extra processing power related to encoding and decoding, it is need complex functions to be built into the communication node. The probability of receiving a correct bit and codeword for relaying a data frame over h hop relay station to the final station is evaluated as a function of channel parameter and number of hops, and the distance between the different station.

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An Adaptive FEC Code Control Algorithm for Mobile Sensor Networks (이동 센서 네트워크를 위한 적응적 FEC 코드 제어 알고리즘)

  • Lee Young-Su;Hong Seung-Wook;Ahn Jong-Suk
    • Proceedings of the Korean Information Science Society Conference
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    • 2005.07a
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    • pp.400-402
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    • 2005
  • 전파(propagation) 오류가 빈번한 무선 이동 네트워크에서는 전송 성능을 향상하기 위해 FEC(Forward Error Correction) 알고리즘을 채택한다. 그러나 정적인 FEC 코드 제어 방식은 연속적으로 변화하는 전파 오류율에 알맞은 정정 코드(check code)를 적용하지 못해 성능이 저하된다. 일례로 측정한 고 오류 무선 센서 네트워크에서는 초단위 평균 BER(Bit Error Rate) 또는 분단위 평균 BER이 0에서 최대 $10^{-3}$까지 연속적으로 변화한다. 이러한 무선 환경에서 전파 오류를 $100\%$ 복구하기 위한 정정 코드를 채택하는 경우에는, 불필요한 정정 코드량은 전체 데이터에 최대 $20\%$를 차지한다. 본 논문에서는 무선 채널의 BER을 직접 측정하지 않고 패킷 전송 성공 여부에 따라 정정 코드의 량, 즉 FEC단계를 동적으로 변화하는 AFECCC (Adaptive FEC Code Control) 알고리즘을 소개한다. AFECCC는 트레이스 기반(trace-driven) 시뮬레이션에서 정적 FEC 방식에 비해 최대 $5\%$ 이상, 또한 실제 센서 네트워크에서는 정적 FEC 알고리즘에 비해 최대 $15\%$ 성능이 향상되었다.

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Analysis of Hybrid ARQ System Using Cross Layer (Cross Layer를 이용한 Hybrid ARQ System 분석)

  • Park, Tae-Doo;Kim, Min-Hyuk;Kim, Chul-Seong;Jung, Ji-Won
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.21 no.11
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    • pp.1229-1234
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    • 2010
  • High quality and high speed multimedia services will be required in the next generation mobile communications. To satisfy these services, powerful error correction techniques are used. ARQ(Auto Repeat Request) techniques, aspects of the throughput, and FEC(Forward Error Correct) techniques have disadvantages in terms of reliability. H-ARQ(Hybrid Auto Repeat Request) systems have been studied extensively as a solution of these disadvantages. In this paper introduce double layer coding and H-ARQ type, proposed H-ARQ system using double layer coding methods. Simulate BER performance and throughput. And we suggest that according to channel condition suitable H-ARQ type.

A Study on the Performance of Multicast Transmission Protocol using FEC Method and Local Recovery Method based on Receiver in Mobile Host (이동 호스트에서 FEC기법과 수신자 기반 지역복극 방식의 멀티캐스트 전송 프로토콜 연구)

  • 김회옥;위승정;이웅기
    • Journal of Korea Multimedia Society
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    • v.5 no.1
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    • pp.68-76
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    • 2002
  • Multicast in mobile host has the problem of hast mobility, multicast decision, triangle routing, tunnel convergence, implosion of retransmission, and bandwidth waste. In particular, the bandwidth waste in radio is a definite factor that decreases transmission rate. To solve the problems, this paper proposes a new multicast transmission protocol called FIM(Forward Error Correction Integrated Multicast), which supports reliable packet recovery mechanism by integrating If Mobility Support for the host mobility, IGMP(Interned Group Management Protocol) for the group management, and DVMRP(Distance Vector Multicast Routing Protocol) for the multicast routing, and it also uses FEC and the local recovery method based on receiver. The performance measurement is performed by dividing the losses into the homogeneous independent loss, the heterogeneous independent loss, and the shared source link loss model.. The result shows that the performances improves in proportion to the size of local areal group when the size of transmission group exceeds designated size. This indicates FIM is effective in the environment where there are much of data and many receivers in the mobile host.

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Packet Size Optimization for Improving the Energy Efficiency in Body Sensor Networks

  • Domingo, Mari Carmen
    • ETRI Journal
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    • v.33 no.3
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    • pp.299-309
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    • 2011
  • Energy consumption is a key issue in body sensor networks (BSNs) since energy-constrained sensors monitor the vital signs of human beings in healthcare applications. In this paper, packet size optimization for BSNs has been analyzed to improve the efficiency of energy consumption. Existing studies on packet size optimization in wireless sensor networks cannot be applied to BSNs because the different operational characteristics of nodes and the channel effects of in-body and on-body propagation cannot be captured. In this paper, automatic repeat request (ARQ), forward error correction (FEC) block codes, and FEC convolutional codes have been analyzed regarding their energy efficiency. The hop-length extension technique has been applied to improve this metric with FEC block codes. The theoretical analysis and the numerical evaluations reveal that exploiting FEC schemes improves the energy efficiency, increases the optimal payload packet size, and extends the hop length for all scenarios for in-body and on-body propagation.

Traffic Optimized FEC Control Algorithm for Multimedia Streaming Applications.

  • Magzumov, Alexander;Jang, Wonkap
    • Proceedings of the IEEK Conference
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    • 2003.07a
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    • pp.477-480
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    • 2003
  • Packet losses in the Internet can dramatically degrade quality of multimedia streams. Forward Error Correction (FEC) is one of the best methods that can protect data from packet erasures by means of sending additional redundant information. Proposed control algorithm provides the possibility of receiving real-time multimedia streams of given quality wifth minimal traffic overhead. The traffic optimization is reached by adjusting packet size as well as block code parameters. Calculations and simulation results show that for non-bursty network conditions traffic optimization can lead to more than 50% bandwidth reduction.

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A Study on BER Performance Improvement by using Adaptive FEC schemes in Visible Light Communication (백색 LED기반 가시광 통신시스템의 선택적 FEC 적용을 통한 BER 성능 향상에 관한 연구)

  • Kim, Kyun-Tak;Yun, Suck-Chang
    • Journal of Convergence Society for SMB
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    • v.6 no.4
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    • pp.99-106
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    • 2016
  • In this paper, we propose an adaptive FEC scheme in visible light communication using white LED. To this end, we investigate the red, green and blue mixing ratio of white LED in order to achieve the white color, and the mixing ratio of those wavelength can be defined as 4 types. Based on those properties, the FEC technique is applied to the wavelength band with the lowest mixing ratio according to mixing ratio types. At that point, we use a LDPC channel coding scheme as the FEC technique. Therefore, the proposed system can mitigate the reduction of data rate and improve total BER performance.

Energy-efficient Reconfigurable FEC Processor for Multi-standard Wireless Communication Systems

  • Li, Meng;der Perre, Liesbet Van;van Thillo, Wim;Lee, Youngjoo
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.17 no.3
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    • pp.333-340
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    • 2017
  • In this paper, we describe HW/SW co-optimizations for reconfigurable application specific instruction-set processors (ASIPs). Based on our previous very long instruction word (VLIW) ASIP, the proposed framework realizes various forward error-correction (FEC) algorithms for wireless communication systems. In order to enhance the energy efficiency, we newly introduce several design methodologies including high-radix algorithms, task-level out-of-order executions, and intensive resource allocations with loop-level rescheduling. The case study on the radix-4 turbo decoding shows that the proposed techniques improve the energy efficiency by 3.7 times compared to the previous architecture.