• 제목/요약/키워드: Symbol Error Rate

검색결과 368건 처리시간 0.024초

다중 심볼 차동 검파를 이용한 트렐리스 부호화된 8DPSK의 성능 분석 (Performance Analysis of the Trellis-Coded 8DPSK with Multiple Symbol Differential Detection)

  • 문태현;김한종;홍대식;강창언
    • 한국전자파학회지:전자파기술
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    • 제4권3호
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    • pp.54-62
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    • 1993
  • 이 논문에서는 다중 TCM (Multiple Trellis-Coded Modulation, MTCM)을 적용하여 변조 시스템의 성능 을 향상 시컨 트렐리스 부호화된 8DPSK를 구성하고 그 성능을 분석한다. 또한 BER(Bit Error Rate)의 향상 을 위해 다중 심볼 차동 검파 방식을 적용한다. 모탤링한 채덜은 디지틀 위성 이동 통신 채널인 라이시안 페이 딩(Rician fading) 채널이다. 디코딩 방볍은 비터비 알고리듬을 사용하며, 연집 에러에의한 비터비 디코더의 에러 전파를 막기위해 인터리빙을 사용한다. 컴퓨터 시율레이션올 통하여 다중 TCM파 다중 심벌 차동 겁파를 적용한 트렐리스 부호화된 8DPSK는 동일한 대역폭 효율을 갖는 부호화되지 않은 차동 변조 방식보다 향상된 성능을 보임을 알 수 있다. 또한 페이딩 환경에서는 인터리빙 방법이 성능 향상에 중요함을 알 수 있다.

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Performance and Energy Consumption Analysis of 802.11 with FEC Codes over Wireless Sensor Networks

  • Ahn, Jong-Suk;Yoon, Jong-Hyuk;Lee, Kang-Woo
    • Journal of Communications and Networks
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    • 제9권3호
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    • pp.265-273
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    • 2007
  • This paper expands an analytical performance model of 802.11 to accurately estimate throughput and energy demand of 802.11-based wireless sensor network (WSN) when sensor nodes employ Reed-Solomon (RS) codes, one of block forward error correction (FEC) techniques. This model evaluates these two metrics as a function of the channel bit error rate (BER) and the RS symbol size. Since the basic recovery unit of RS codes is a symbol not a bit, the symbol size affects the WSN performance even if each packet carries the same amount of FEC check bits. The larger size is more effective to recover long-lasting error bursts although it increases the computational complexity of encoding and decoding RS codes. For applying the extended model to WSNs, this paper collects traffic traces from a WSN consisting of two TIP50CM sensor nodes and measures its energy consumption for processing RS codes. Based on traces, it approximates WSN channels with Gilbert models. The computational analyses confirm that the adoption of RS codes in 802.11 significantly improves its throughput and energy efficiency of WSNs with a high BER. They also predict that the choice of an appropriate RS symbol size causes a lot of difference in throughput and power waste over short-term durations while the symbol size rarely affects the long-term average of these metrics.

Transmission Performance of Half-Symbol-Rate-Carrier Offset QPSK Modulation in Band-limited Channels

  • Yeo, Hyeop-Goo
    • Journal of information and communication convergence engineering
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    • 제7권2호
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    • pp.152-156
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    • 2009
  • This paper examines the BER performance of the recently proposed half-symbol-rate-carrier (HSRC) offset quadrature phase-shift-keying (OQPSK) receiver for high-speed data communication. A modified demodulation technique using a bit-time period signal integration, the bit-error-rate (BER) performance of the HSRC-OQPSK signal improves more than 4dB compared to that of a demodulation technique using a symbol-time period integration. This paper also examines the BER performance of modified demodulation with various band-limited channels modeled using low-pass filters, and the three different data-rate systems are simulated and compared with the performance of the system using the conventional demodulation technique.

A Novel Adaptive Turbo Receiver for Large-Scale MIMO Communications

  • Chang, Yu-Kuan;Ueng, Fang-Biau;Tsai, Bo-Yi
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제12권7호
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    • pp.2998-3017
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    • 2018
  • Massive (large-scale) MIMO (multiple-input multiple-output) is one of the key technologies in next-generation wireless communication systems. This paper proposes a high-performance low-complexity turbo receiver for SC-FDMA (single-carrier frequency-division multiple access) based MMIMO (massive MIMO) systems. Because SC-FDMA technology has the desirable characteristics of OFDMA (orthogonal frequency division multiple access) and the low PAPR (peak-to-average power ratio) of SC transmission schemes, the 3GPP LTE (long-term evolution) has adopted it as the uplink transmission to meet the demand high data rate and low error rate performance. The complexity of computing will be increased greatly in base station with massive MIMO (MMIMO) system. In this paper, a low-complexity adaptive turbo equalization receiver based on normalized minimal symbol-error-rate for MMIMO SC-FDMA system is proposed. The proposed receiver is with low complexity than that of the conventional turbo MMSE (minimum mean square error) equalizer and is also with better bit error rate (BER) performance than that of the conventional adaptive turbo MMSE equalizer. Simulation results confirm the effectiveness of the proposed scheme.

레일레이 페이딩채널에서 선택성 결합방식의 공간다이버시티를 이용한 QAM의 심벌오율 (Symbol Error Rates of QAM with Selection Combining Space Diversity in Rayleigh Fading Channels)

  • 김창주;김영수;정구영;문재경;이혁재
    • 한국전자파학회지:전자파기술
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    • 제6권3호
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    • pp.75-79
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    • 1995
  • This paper derives the symbol error rate (SER) for quadrature amplitude modulation (QAM) with L-fold selection combining (SC) space diversity in Rayleigh fading channel. No analysis has been reported yet for theoretical SER performance of QAM with SC space diversity in Rayleigh fading channels. The formula is obtained by averaging the symbol error probability of M-ary QAM in an additive white Gaussian noise channel over the distribution of the maximum signal-to-noise ratio among all of the diversity channels. By giving the order of diversity, L, and the number of signal points, M, we have been able to obtain the SER performance of QAM with general SC space diversity. Analytical results show that the probability of error decreases with the order of diversity. We can also see that the incremental diversity gain per additional diversity decreases as the number of branches becomes larger.

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SER Analysis of QAM with Space Diversity in Rayleigh Fading Channels

  • Kim, Chang-Joo;Kim, Young-Su;Jeong, Goo-Young;Mun, Jae-Kyung;Lee, Hyuck-Jae
    • ETRI Journal
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    • 제17권4호
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    • pp.25-35
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    • 1996
  • This paper derives the symbol error probability for quadrature amplitude modulation(QAM) with L-fold space diversity in Rayleigh fading channels. Two combining techniques, maximal ratio combining(MRC) and selection combining(SC), are considered. The formula for MRC space diversity is obtained by averaging the symbol error probability of M-ary QAM in an additive white Gaussian noise(AWGN) channel over a chi-square distribution with 2L degrees of freedom. The obtained formula overcomes the limitations of the earlier work, which has been limited only to deriving the symbol error rate(SER) of QAM with two branch MRC space diversity. The formula for SC space diversity is obtained by averaging the symbol error probability of M-ary QAM in an AWGN channel over the distribution of the maximum signal-to noise ratio among all of the diversity channels for SC space diversity has been reported yet. Analytical results show that the probability of error decreases with the order of diversity gain per additional branch decreases as the number of branches becomes larger. On the other hand, the performance of 16 QAM with MRC becomes much better than that of SC as the number of branches becomes larger. By giving the order of diversity, L, and the number of signal points, M, we have been able to obtain the SER performance of QAM with general space diversity. These results can be used to determine the order of diversity to achieve the desired SER in land mobile communication system employing QAM modulation.

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무선랜 시스템에서의 IQ 부정합 보상 기법 연구 (IQ Unbalance Compensation for OPDM Based Wireless LANs)

  • 김지호;정윤호;김재석
    • 한국통신학회논문지
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    • 제32권9C호
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    • pp.905-912
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    • 2007
  • 본 논문에서는 OFDM 기반 무선 LAN 시스템에서 긴 훈련심볼을 이용하는, 시간동기 오차의 영향이 고려된 IQ imbalance 추정 및 보상 기법을 제안한다. 기존의 긴 훈련심볼을 이용한 IQ imbalance 보상 기법은 시간동기 오차에 민감한 구조를 갖기 때문에 시간동기 오차가 필연적인 실제 시스템에서는 심각한 성능 저하를 보인다. 본 논문에서는 시간동기 오차로 인해 발생하는 위상회전을 상쇄시킬 수 있는 새로운 criterion을 정의하고, 이에 따른 IQ imbalance 추정 및 보상 기법을 제안한다. 제안된 기법은 시간동기 오차가 존재할 경우에도 IQ imbalance 의 영향을 이상적인 경우 대비 최대 0.2dB 이하로 보상할 수 있으며, IEEE 802.11a 시스템의 54Mbps 전송모드에 적용하였을 경우 기존 기법에 비해 약 4.3dB의 성능 이득을 보인다. 제안된 기법을 이용한 IQ imbalance 추정 및 보상단은 Verilog HDL을 이용하여 하드웨어 설계 및 검증 되었으며, 0.18um CMOS 공정을 이용하여 합성한 결과, 약 75K gates 와 6K bits의 메모리로 구현되었다.

제한된 연산량을 갖는 Dijkstra 탐색 기반의 스피어 디코딩 (Dijkstra's Search-Based Sphere Decoding with Complexity Constraint)

  • 윤혜연;김태환
    • 전자공학회논문지
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    • 제54권7호
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    • pp.12-18
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    • 2017
  • 본 논문은 MIMO 통신 시스템을 위한 Dijkstra 탐색 기반의 제한된 연산량을 갖는 스피어 디코딩 (sphere decoding; SD) 알고리즘을 제안하고 이에 대한 성능을 평가한다. Dijkstra 탐색 기반의 SD는 MIMO 심볼 검파 과정에서 저 복잡도로 준 최적의 에러율 성능을 달성하는 효율적인 tree 탐색 알고리즘이다. 하지만 Dijkstra 탐색 기반의 SD는 채널 환경에 따라 연산량이 가변적이고, 최악의 경우 전역 탐색의 경우에 해당하는 높은 연산량을 갖는 심각한 문제가 있다. 본 논문에서는 이러한 문제를 해결하기 위해서 연산량을 제한시킨 새로운 Dijkstra 탐색 기반의 SD 알고리즘을 제시한다. 제안된 알고리즘은 연산량이 제한되었음에도 여전히 준 최적의 에러율 성능을 달성함을 모의 실험을 통해 검증하였다.

DVB-S2의 16-APSK 성능 분석 (Symbol Error Rate of 16-APSK Modulation)

  • 손재승;이유성;박현철
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2004년도 하계종합학술대회 논문집(1)
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    • pp.11-14
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    • 2004
  • Digital Video Broadcasting - Satellite (DVB-S) [1] (EN 300 421(bibliography)) was introduced as a standard in 1994. However, by combing with higher order modulation, promise more powerful alternatives to the DVB-S / DVB-DSNG coding and modulation schemes. Variable rate coding and modulation (VCM) may employed to provide different levels of error protection to different service components. Adaptive coding and modulation (ACM) provides more exact channel protection and dynamic link adaptation to propagation conditions, targeting each individual receiving terminal. By these reasons, DVB-S2 introduced. This paper derives exact symbol error rate(SER) of 16-Amplitude Phase Shift Keying(APSK) modulation by using Craig's formula. 16-APSK modulation is used in DVB-S2. The difference between Union Bound and Craig's formula is 1.26dB in low SNR and 0.1dB in high SNR.

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Rician-Nakagami 페이딩 채널에서 M-PSK와 M-DPSK 시스템에 대한 효과적인 점근적 심볼 에러 확률 성능 분석 (Effective Asymptotic SER Performance Analysis for M-PSK and M-DPSK over Rician-Nakagami Fading Channels)

  • 이후진
    • 전기학회논문지
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    • 제65권12호
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    • pp.2177-2182
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    • 2016
  • Using the existing exact but quite complicated symbol error rate (SER) expressions for M-ary phase shift keying (M-PSK) and M-ary differential phase shift keying (M-DPSK), we derive effective and concise closed-form asymptotic SER formulas especially in Rician-Nakagami fading channels. The derived formulas can be utilized to efficiently verify the achievable error rate performances of M-PSK and M-DPSK systems for the Rician-Nakagami fading environments. In addition, by exploiting the modulation gains directly obtained from the asymptotic SER formulas, we also theoretically demonstrate that M-DPSK suffers an asymptotic SER performance loss of 3.01dB with respect to M-PSK for a given M in Rician-Nakagami fading channels at high signal-to-noise ratio (SNR).