• Title/Summary/Keyword: 주파수 공간 블록 부호

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3/4-rate SFBC SSB SC FDMA System with 4 Transmit Antennas (4개의 송신 안테나를 갖는 3/4 비율의 주파수 공간 블록 부호 단일 측대 파형 SC FDMA 시스템)

  • Won, HuiChul
    • Journal of Korea Society of Industrial Information Systems
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    • v.26 no.6
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    • pp.1-9
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    • 2021
  • In order to increase frequency transmission efficiency, single side band(SSB) transmission systems with the complex conjugate symmetry characteristics on a frequency domain have been studied. In addition, orthogonal block codes(space-time or space-frequency block code(SFBC)) for the diversity performance gain of transmission systems have been widely researched. In this paper, we implement a 3/4-rate SFBC SSB single-carrier(SC) frequency division multiple access(FDMA) system with 4 transmit antennas. It can be shown from the simulation results that the proposed SFBC SSB SC FDMA system using the 3/4-rate 4×4 orthogonal block code outperforms the conventional SSB SC FDMA system and the 2×2 SFBC SSB SC FDMA system with 2 transmit antennas.

Sign Reversal Channel Switching Method for Space-Frequency Block Code in Orthogonal Frequency Division Multiplexing System (직교 주파수 분할 다중화 시스템의 공간 주파수 블록 코딩에서의 부호 반전 채널 스위칭 기법)

  • Jung, Hyeok-Koo
    • Journal of Korea Society of Industrial Information Systems
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    • v.25 no.5
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    • pp.13-21
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    • 2020
  • This paper proposes a sign reversal channel switching method in space-frequency block code for orthogonal frequency division multiplexing system. In case of sending source data on other antenna, it is necessary for the receiver to change combining method according to the channel variation. If one does not know the predefined channel switching sequence, it is not possible to decode the received data precisely. In transmit data symbols' exchanges for a channel switching, data symbols are exchanged according to a format of space-frequency block code. In this paper, we proposes a simple sign reversal method except exchanging data symbols between transmit antennas. It is shown that this method occurs another combining method for a simple encryption in the receiver.

Random Sign Reversal Technique in Space Frequency Block Code for Single Carrier Modulation (단일 반송파 변조를 위한 공간 주파수 블록 코드의 난수 부호 반전 기법)

  • Jung, Hyeok-Koo
    • Journal of Korea Society of Industrial Information Systems
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    • v.27 no.5
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    • pp.25-36
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    • 2022
  • This paper proposes a random sign reversal technique in space frequency block code for single carrier modulation. The traditional space time and frequency block coding technique may be confronted with radio environments openly, severe radio hijacking problems are to be overcome. In order to avoid such an open radio issue, random coded data protection technique for space-time block code was proposed, but this algorithm can change channel combination per an Orthogonal Frequency Division Multiplexing block. This kind of slow switching increases the probability that nearby receivers will detect the transmitted data. This paper proposes a fast switching algorithm per data symbols' basis which is a random sign reversal technique in space frequency block code for Single Carrier Modulation. It is shown in simulation that the proposed one has a superior performance in comparison with the performance of the receiver which do not know the random timing sequence of sign reversal.

Space-Frequency Block Coded OFDMA Transmission System using Multiple Relays for Shadow Area (음영 지역을 위한 다중 중계기 기반의 주파수 공간 블록 부호화 OFDMA 전송 시스템)

  • Won, Hui-Chul
    • Journal of Korea Society of Industrial Information Systems
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    • v.19 no.4
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    • pp.1-8
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    • 2014
  • In order to cope with shadow areas and to extend cell coverage, relay-assisted wireless communication systems have been widely studied. In this paper, we propose a space-frequency(SF) block coded orthogonal frequency division multiple access(OFDMA) transmission system in a relaying multi-path shadow area. The receiving performance of mobile station in a shadow area can be improved by applying SF block code to the recovered signals of multiple relays before re-transmitting them. The simulation result shows that the proposed SF block coded OFDMA transmission system considerably outperforms the conventional single-path OFDMA transmission system.

Comparative Performance of Differential Space-Time Block Codes Over Time-Selective Fading Channels (시변 페이딩 채널에서 검파방식에 따른 차분 공간-시간 블록 부호의 성능 비교)

  • Kang, Sung-Ho;Kim, Young-Ju;Lee, In-Sung
    • The Journal of the Acoustical Society of Korea
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    • v.25 no.8
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    • pp.356-361
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    • 2006
  • We present the performance of differential space-time block decoders. which does not require the channel state information. We suggest the structure of the multiple blocks differential space time decoders. which does not require the channel state information, and analyze the Performances. In quasi-static flat fading channels. the Performance of multiple blocks differential detection (MD-STC) outperforms that of 2 blocks(D-STC) by 1.5dB. But in the time-selective fading channels due to Doppler frequency $(f_d)$, the performance of MD-STC degrades as the vehicular speed is greater than 200km/hr in 802.16e systems, where the data transmission rate is 144kbps.

Space-Frequency Block Coded Relay Transmission System for a Shadow Area (음영 지역을 위한 주파수 공간 블록 부호화 중계기 전송 시스템)

  • Won, Hui-Chul
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.9
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    • pp.5776-5782
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    • 2014
  • Relay-assisted wireless communication systems have been studied widely to cope with shadow areas and extend the cell coverage. This paper proposes a space-frequency (SF) block coded single carrier-frequency division multiple access (SC-FDMA) transmission system in a relaying multi-path shadow area and present the performance comparison of SC-FDMA systems based on the signal-to-noise power ratio (SNR) between a relay and a destination station. The performance of relaying SC-FDMA systems can be improved by applying SF block code to the recovered signals of relays before re-transmitting them. The simulation result showed that the SNR performance of the proposed SF block coded relaying SC-FDMA system was approximately 5 dB better than the SNR performance of the single-path relaying SC-FDMA system at a symbol error rate (SER) of $10^{-2}$.

Multiple-Relay-Assisted Spectral Efficient OFDMA Transmission System with Simple Channel Cyclicity Restoration (간단한 채널 주기성 복원이 포함된 다중 중계기 기반의 주파수 효율적인 OFDMA 전송 시스템)

  • Won, Hui-Chul
    • Journal of Korea Society of Industrial Information Systems
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    • v.20 no.6
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    • pp.1-10
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    • 2015
  • In this paper, we propose a spectral efficient orthogonal frequency division multiple access(OFDMA) transmission system using multiple relays for a shadow area. The performance of the proposed OFDMA system in a shadow area can be improved by applying space-frequency(SF) block code over relaying multi-path channels. A simple channel cyclicity restoration method is also added in the proposed OFDMA system without cyclic prefix(CP) to recover the destruction of channel cyclicity due to the lack of CP. Simulation results show that the proposed OFDMA system without CP is almost same as that of the conventional OFDMA system with sufficient CP, which increases the spectral efficiency of the system.

Space-Frequency Block Coded Single Side Band SC-FDMA Transmission System (주파수 공간 블록 부호화된 단일 측대 파형 SC FDMA 전송 시스템)

  • Won, Hui-Chul
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.20 no.7
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    • pp.423-429
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    • 2019
  • Recently, a variety of methods for the performance improvement of ultra-high speed wideband wireless transmission systems have been suggested. This paper proposes a space-frequency (SF) block coded single side band (SSB) single carrier (SC)-frequency division multiple access (FDMA) transmission system. In the proposed SSB SC-FDMA system, SF block code is implemented with the complex conjugates, which are formed from discrete Fourier transform (DFT) spreading of pulse amplitude modulation (PAM) signals. As a result, transmit diversity gain can be obtained in the proposed SF block coded SSB SC-FDMA system without any significant increase of the system computational complexity. The simulation result shows that the signal-to-noise power ratio (SNR) performance of the proposed SF block coded SSB SC-FDMA system is approximately 4 dB better than the SNR performance of the conventional SSB SC-FDMA system with single transmit antenna at a symbol error rate (SER) of $10^{-2}$.

A Simple Human Visual Weighted Hadamard Transform Image Coding (단순한 시각적 하중에 의한 아다마르 영상부호화)

  • Hwang, Jae-Jeong;Lee, Moon-Ho
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.26 no.4
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    • pp.98-105
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    • 1989
  • Various models incorporating Human Visual System (HVS) with the Hadamard transform (HT) represented by Walsh functions are considered. Using the exact frequency components of HT basis functions, the optimum modulation transfer function (MTF) which has a higher peak frequency than DCT schemes is obtimum modulation transfer function (MTF) which has a higher peak frequency than DCT schemes is obtained analytically and visually. The main criterion, for error measurement, is errors at the block boundaries which is an important factor in transform coding. The scheme which has no inverse HVS is proposed. It causes some degradation of image data but it is insignigicant. Crossing area of 4 blocks is equalized by the HVS weighting coefficients. The HVS weighted coding results in perceptually higher quality images compared with the unweighted scheme.

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Quantitative Image Qualify Assessment for Block-based DCT Image Coder using Human Visual Characteristics (인간시각특성을 이용한 블록기반 DCT 영상 부호화기의 정량적 화질 평가)

  • Chung, Tae-Yun
    • Journal of the Korean Institute of Intelligent Systems
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    • v.12 no.5
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    • pp.424-431
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    • 2002
  • This paper proposes a new quantitative image assessment model which is essential to verify the performance of block-based DCT coding. The proposed model considers not only global distortions such as frequency sensitivity and channel masking using HVS based visual model, but also distortions including several local distortions caused by block-based coding.