• Title/Summary/Keyword: SC-FDE

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SC-FDE Design to Cope with Narrow Band Jammer (협대역 재머 대응을 위한 SC-FDE 구조 설계)

  • Ju, So-young;Jo, Sung-mi;Yu, Jeonghoon;Jeong, Eui-rim
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2017.10a
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    • pp.614-616
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    • 2017
  • In this paper, based on the conventional SC-FDE structure, we propose a new SC-FDE structure to cope with narrow band jammer. In the conventional SC-FDE structure, channel estimation is performed in the time domain. When a narrow band jammer exists, time-domain channel estimation is very difficult due to high power jamming interference, which degrades receiver performance. To relieve from this problem, a new SC-FDE frame is proposed to enable channel estimation under narrow band jamming environments. In this paper, we proposed a modified SC-FDE structure that can perform channel estimation in the frequency domain, and verified the performance via computer simulation.

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Overhead Reduction by Channel Estimation Using Linear Interpolation for SC-FDE Transmission (SC-FDE 전송 방식에서 선형 보간법을 이용한 채널추정으로 오버헤드 감소 방안)

  • Song, Min-Su;Kil, Haeng-Bok;Kim, Jaesin;Jeong, Eui-Rim
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2017.10a
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    • pp.611-613
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    • 2017
  • This paper proposes a new method to reduce the overhead by pilots for single carrier frequency domain equalization (SC-FDE) transmission. In the conventional SC-FDE transmission structure, the overhead by transmitting pilot are heavy because the pilot are transmitted at every SC-FDE block. The proposed SC-FDE structure has fewer pilots and many SC-FCE blocks are transmitted between pilots. The channel estimation and equalization is performed at the pilot period and the channels between pilots are estimated through linear interpolation. This reduces the pilot overhead by reducing the pilot transmission compared with the conventional structure, and enables reliable channel estimation and equalization.

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MRC MMSE Equalization for SC-FDE in Amplify-and-Forward Relaying Networks (AF 방식 중계기 네트워크에서의 SC-FDE를 위한 MRC MMSE 등화 기법)

  • Won, Hui-Chul
    • Journal of Korea Society of Industrial Information Systems
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    • v.16 no.4
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    • pp.19-26
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    • 2011
  • Relay-assisted multiple input multiple output (MIMO) technique has become a promising candidate for next generation broadband wireless communications. In this paper, we propose maximum ratio combining (MRC) minimum mean-square-error (MMSE) equalization for single carrier-frequency domain equalizer (SC-FDE) in amplify-and-forward (AF) relaying networks. The performance of SC-FDE system can be improved considerably by achieving both the diversity gain and the MMSE equalization gain when the signals from source-destination (S->D) and source-relay-destination (S->R->D) are combined and equalized by means of the MMSE criteria. We find the weighting coefficients of MRC combining and the tap coefficients of MMSE equalizer for SC-FDE in AF relaying networks. Simulation results show that the proposed relay-based system considerably outperforms the conventional SC-FDE system.

SC-FDE System Using Decision-Directed Method Over Time-Variant Fading Channels (시변 페이딩 채널에 대한 결정 지향 방식의 SC-FDE 시스템)

  • Kim, Ji-Heon;Yang, Jin-Mo;Kim, Whan-Woo
    • The Journal of the Acoustical Society of Korea
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    • v.26 no.6
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    • pp.227-234
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    • 2007
  • This paper describes a transmission method based on a single carrier with frequency domain equalization (SC-FDE) scheme with cyclic prefix(CP). The SC-FDE has similar features with orthogonal frequency division multiplexing(OFDM). Similar to OFDM, a SC-FDE system is computationally efficient since equalization is reformed on a block of data in the frequency domain. Especially, it has the advantage of low sensitivity to nonlinear distortion compared to OFDM. In this paper, we design a SC-FDE receiver using decision-directed method, and present simulation results.

Comparisons on Diversity Techniques for SC-FDE Systems (SC-FDE 시스템에서의 다이버시티 기술 비교)

  • Rim, Min-Joong;Kim, Hong-Seog
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.33 no.10A
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    • pp.964-971
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    • 2008
  • This paper compares the performances of cyclic delay diversity and phase rolling techniques for SC-FDE(Single Carrier with Frequency Domain Equalization) systems with multiple transmit antennas assuming time-flat and frequency-flat channels. In OFDM(Orthogonal Frequency Division Multiplexing) systems generation of time varying channels using phase rolling can result in performance gains comparable to those of frequency-selective channels made by cyclic delay diversity However, in SC-FDE systems making time-selective channels may produce better results than creation of frequency-selective channels.

Design of SC-FDE Transmission Structure to Cope with Narrow Band Interference (협대역 간섭신호 대응을 위한 SC-FDE 전송 구조 설계)

  • Joo, So-Young;Jo, Sung-Mi;Hwang, Chan-Ho;Jeong, Eui-Rim
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.22 no.5
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    • pp.787-793
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    • 2018
  • In this paper, we propose a new single carrier - frequency domain equalization (SC-FDE) structure to cope with narrow band interference. In the conventional SC-FDE structure, when a high-power narrow band interference exists, channel estimation and data recovery is difficult. To relieve from this problem, this paper proposes a new SC-FDE frame structure to enable frequency-domain channel estimation in the environments that exist narrow band interference. Specifically, in the conventional method, the channel estimation is performed in time-domain first and from that, the frequency-domain channel is obtained by Fourier transform. In contrast, we proposed a new SC-FDE structure to enable frequency-domain channel estimation directly from received signals without time-domain channel estimation. The receiver performance improvement is verified through computer simulation. According to the results, the proposed technique can detect the signal with less than 2 dB loss compared with jammer-free environments, while the conventional method does not communicate with each other.

A New SC-FDE Transmission Structure for Coping with Narrow Band Jammers and Reducing Pilot Overhead (협대역 재머 대응과 파일럿 오버헤드 감소를 위한 새로운 SC-FDE 전송구조)

  • Joo, So-Young;Choi, Jeung-Won;Kim, Dong-Hyun;Jeong, Eui-Rim
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.23 no.8
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    • pp.981-987
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    • 2019
  • In this paper, we propose a new SC-FDE (single carrier frequency domain equalization) structure to cope with narrow band interference signals or jammers and reduce pilot overhead. The conventional SC-FDE structure has a problem that the receiver performance degrades severely due to difficulty in time-domain channel estimation when narrow band jammers exist. In addition, the spectral efficiency is lowered by transmitting pilot at every SC-FDE block to estimate channel response. In order to overcome those problems, the proposed structure is devised to estimate frequency domain channel directly without time domain channel estimation. To reduce the pilot overhead, several data blocks are transmitted between two pilots. The channel estimate of each data block is found through linear interpolation of two channel estimates at two pilots. By performing frequency domain channel equalization using this channel estimate, the distortion by the channel is well compensated when narrow band jammers exist. The performance of the proposed structure is confirmed by computer simulation.

Relationships between Diversity Techniques and Channel Coding Rates for OFDM and SC-FDE Systems (OFDM 및 SC-FDE 시스템에서의 다이버시티 기술과 채널부호화율의 상관관계)

  • Rim, Min-Joong
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.45 no.11
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    • pp.23-31
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    • 2008
  • This paper addresses relationships between diversity techniques and channel coding rates for OFDM and SC-FDE systems. In OFDM systems it is important to select proper channel coding rates according to multi-path channel profiles and low channel coding rates are required with cyclic delay diversity compared to the case of space time coding. On the other hand, it is not necessary to use low channel coding rates for SC-FDE systems where DFT spreading is applied to OFDM and relatively high channel coding rates can be used regardless of diversity techniques.

Analysis of Performance for SC-FDE Systems Using Proportional Adaptive Equalizer in $2GHz{\sim}10GHz$ Frequency Radio Channel Models ($2GHz{\sim}10GHz$ 무선 채널 환경에서 비례 적응형 등화기를 이용한 SC-FDE 시스템 구현과 성능분석)

  • Yang, Yong-Seok;Lee, Kyu-Tae
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.4C
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    • pp.447-453
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    • 2007
  • In the multipath fading channel, OFDM(Orthogonal Frequency Division Multiplexing)system possess the characteristics of ISI/ICIwith prefix, but a weak point of circuit complexity and PAPR problem. SC-FDE(Single Carrier with Frequency Domain Equalization) performance is similar to OFDM system, but equalizer is complex in frequency domain. In this paper, simple proportional equalizer offer for SC-FDE system, it useful method in the $2GHz{\sim}\;10GHz$ channel model such as indoor, outdoor, SUI. It prove using MATLAB simulation, speed faster then OFDM system, reduce terminal complexity in same test condition.

Single Carrier Frequency Domain Equalization in 3-slot Based Amplify-and-Forward Relaying Network for Shadow Area (음영 지역을 위한 3-슬롯 기반의 AF 방식 중계기 네트워크에서의 단일 반송파 주파수 대역 등화 기법)

  • Won, Hui-Chul
    • Journal of Korea Society of Industrial Information Systems
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    • v.17 no.7
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    • pp.9-16
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    • 2012
  • In order to extend cell coverage and to cope with shadow areas, a relay-assisted wireless communications system has been widely studied. In this paper, we propose new equalization method for single carrier (SC) frequency domain equalizer (FDE) in amplify-and-forward (AF) relaying multi-path networks to improve the performance at shadow areas. The performance of SC-FDE system in 3-slot based multi-path networks can be improved considerably with the diversity gain which we obtain by equalizing the combined signal from relays by means of the minimum mean square error (MMSE) criteria. We find the weighting coefficients of maximum ratio combining (MRC) and the tap coefficients of MMSE equalizer for SC-FDE in AF relaying multi-path networks. Simulation results show that the proposed system considerably outperforms the conventional SC-FDE system.