• 제목/요약/키워드: Linear Receiver

검색결과 303건 처리시간 0.031초

MCS 레벨에 따른 적응 선형 수신기 (An MCS Level Adaptive Linear Receiver)

  • 이규희;김재권;윤상균
    • 한국정보전자통신기술학회논문지
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    • 제2권1호
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    • pp.59-64
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    • 2009
  • 본 논문은 다중 안테나를 사용하는 통신시스템의 수신부에서 사용하는 복잡도가 낮은 신호검출기법을 제안한. 선형검출기법에는 Zero-Forcing (ZF)기법과 minimum mean squared error (MMSE) 기법이 있고, ZF기법은 MMSE 기법에 비해 하드웨어 구현관점에서 더 간단하나 성능이 열등한 것으로 알려져 있다. 일반적으로 통신시스템에서는 채널상황에 따라 modulation coding scheme (MCS)을 적응으로 바꾸어 사용한다. 본 논문에서는 사용되는 MCS 레벨에 따라 ZF기법과 MMSE기법 중 더 적합한 방식을 선택할 필요가 있음을 보인다. 또한 하드웨어 구현을 통해 적응 선형수신기의 복잡도가 기존의 MMSE 기법의 복잡도와 유사함을 보인다.

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다중톤 재밍 환경에서 clipper 수신기를 사용하는 FFH/MFSK 시스템의 성능 분석 (Performance Analysis of FFH/MFSK System with Clipper Receiver in the Presence of Multitone Interference)

  • 전근표;곽진삼;권오주;박재돈;이재홍
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2003년도 통신소사이어티 추계학술대회논문집
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    • pp.15-19
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    • 2003
  • In this paper, the bit error rate (BER) performance of the fast frequency hopping/M-ary frequency shift keying system using the clipper receiver is analyzed by using the characteristic function (CF) technique in the presence of n=1 band multitone jamming and additive white Gaussian noise environment. The CFs of the clipper receiver outputs are derived as a infinite series representation using Gamma function and Marcum's Q -function. The analytical results are validated with various simulation results. Performance comparisons with linear combining receiver are shown that the BER performance of the clipper receiver is much better than that of the linear combining receiver In addition, as the clipping level approaches to infinity, it is shown that the clipper receiver simply performs a linear combining without clipping and there exists an optimum value of diversity level (the number of hops per symbol) that maximizes the worst case BER performance of the clipper receiver.

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디지털 광대역 마이크로 웨이브 수신기에서의 선형 증폭기와 ADC 접 속의 해석 (Analysis of the linear Amplifier/Analog-Digital Converter Interface in a Digital Microwave Wideband Receiver)

  • 이민혁;장은영
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 1998년도 하계종합학술대회논문집
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    • pp.110-113
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    • 1998
  • An analysis of the relationship between a linear amplifier chain and an analog-to-digital converter(ADC) in a digital microwave widevand receiver, with respect to sensitivity and dynamic range issues, is presented. The effects of gain, third-order intermodulation products and ADC characteristics on the performance of the receiver are illustrated and design criteria for the linear amplifier chain given a specified ADC are developed. A computer program is used to calculate theretical receiver performance based on gain and third-order intermodulation product selections. Simulated results are also presented and compared with theoretical values.

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Joint Transmitter and Receiver Optimization for Improper-Complex Second-Order Stationary Data Sequence

  • Yeo, Jeongho;Cho, Joon Ho;Lehnert, James S.
    • Journal of Communications and Networks
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    • 제17권1호
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    • pp.1-11
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    • 2015
  • In this paper, the transmission of an improper-complex second-order stationary data sequence is considered over a strictly band-limited frequency-selective channel. It is assumed that the transmitter employs linear modulation and that the channel output is corrupted by additive proper-complex cyclostationary noise. Under the average transmit power constraint, the problem of minimizing the mean-squared error at the output of a widely linear receiver is formulated in the time domain to find the optimal transmit and receive waveforms. The optimization problem is converted into a frequency-domain problem by using the vectorized Fourier transform technique and put into the form of a double minimization. First, the widely linear receiver is optimized that requires, unlike the linear receiver design with only one waveform, the design of two receive waveforms. Then, the optimal transmit waveform for the linear modulator is derived by introducing the notion of the impropriety frequency function of a discrete-time random process and by performing a line search combined with an iterative algorithm. The optimal solution shows that both the periodic spectral correlation due to the cyclostationarity and the symmetric spectral correlation about the origin due to the impropriety are well exploited.

대수수신계통의 탐색특성 (Detection Performance of Logarithmic Receiver)

  • 윤현보
    • 한국통신학회논문지
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    • 제6권1호
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    • pp.27-31
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    • 1981
  • 본 논문에서는 방해잡음이 존재하는 상황하에서 수대신능신계통에 대한 실효탐지능력인자의 변화를 고찰하였다. 최대탐지거리와 방해거리를 변수로하여 계산한 대수수신계통과 선형수신계통의 결과를 비교하였다. 대수수신계통이 선형수신계통보다 광역의 동특성을 가지나 탐지거리 100km에서 대수수신계통의 실효탐지인자가 약 15%정도 감소함을 알 수 있었다.

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레일레이 페이딩 채널에서 하이브리드 확산대역 시스팀의 성능 (Performance of hybrid spead spectrum systems in rayleigh fading channel)

  • 조현욱;박상규
    • 한국통신학회논문지
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    • 제21권8호
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    • pp.2023-2032
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    • 1996
  • In this paper, we calculate average bit error probabilities of asynchronous hybrid DS/FH-SSMA systems in AWGN chnnel and nonselective Rayleigh fading channel. We analyze and compare the performance of systems in AWGN channel and Rayleigh fading channel by using linear correlation receiver and hard limiting correlation receiver(nonlinear correlation receiver). Binary PSK scheme is considered and random spreading code sequences and random hopping patterns are used. Bit error probabilities of the systems with/without near-far problem under the same bandwidth expansion are calculated. the result shows that the performance of hard limiting correlation receiver is better than that of linear correlation receiver over nonselective Rayleigh fading channel.

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등간격 선형어레이와 등간격 원형어레이 레이더를 위한 ESPRIT 표적 위치 추정 기법 (ESPRIT target position estimation with uniform linear array and uniform circular array)

  • 남궁걸;임종태;유도식
    • 한국항행학회논문지
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    • 제16권6호
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    • pp.952-959
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    • 2012
  • 이 논문에서 우리는 송신기와 수신기에 각각 등간격 선형 어레이 (ULA : Uniform Linear Array)와 등간격 원형 어레이(UCA : Uniform Circular Array)를 사용하는 MIMO (Multiple Input Multiple Output) 레이더 시스템을 위한 ESPRIT (Estimation of Signal Parameter via Rotational Invariance Technique) 알고리듬 기반 표적 위치 추정 기법을 제안한다. 수신 안테나가 등간격 선형 어레이인 경우의 ESPRIT과 달리 등간격 원형 어레이인 경우 부어레이의 수신 신호 벡터 간 순환 불변성 (Rotational Invariance)이 만족하지 않는다. 이를 해결하기 위한 연구가 진행되었으나 송신각 추정 문제는 고려되지 않았다. 이 논문에서는 송신 안테나와 수신 안테나를 모두 고려한 ESPRIT 알고리듬을 제안하여 송신 고도각, 수신 고도각, 그리고 수신 방위각을 동시에 추정하는 방법을 소개하고자 한다.

Integration of 4-20mA Current Loop Receiver Instrument Variable Linear Mapping

  • 롱치록;박수홍
    • 한국전자통신학회논문지
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    • 제7권6호
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    • pp.1537-1544
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    • 2012
  • 본 연구에서는 4-20mA 수신기를 가진 선형매핑용량의 새로운 집적방법에 대한 것이다. 본 연구에서 제안한 모듈은 즉각적으로 기구변환을 사용자들이 편리하게 할 수 있도록 하였다. 구성은 직렬통신포트에 콘솔명령을 사용하여 쉽게 배치하였다. 전류루프나 디폴트전류송신기에서의 중단되는 현상을 표시에 의하여 쉽게 발견되도록 하였다. 이러한 모듈의 적용과 실험에 대하여 상세히 연구하였다.

DBF 수신기를 이용한 DOA 측정시스템의 평가 (Estimation of DOA Measurement System using DBF Receiver)

  • 민경식;박철근;고지원
    • 한국전자파학회:학술대회논문집
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    • 한국전자파학회 2003년도 종합학술발표회 논문집 Vol.13 No.1
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    • pp.219-223
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    • 2003
  • This paper describes an estimation of DOA(Direction Of Arrival) measurement system using DBF receiver with linear array antenna. This DBF receiver is composed of resistive FET mixer using low IF mettled. A radio frequency(RF), a local oscillator(LO) and ail intermediate frequency(IF) considered in this research are 2.09 GHz, 2.08 GHz and 10 MHz, respectively. This receiver is composed of a band-pass filter, a low-pass filter, a DC bias circuit. DOA measurement system is consist of linear array antenna, DBF receiver, AD control box and computer in the anechoic chamber. Receiving antenna is 4-array monopole antenna and DBF receiver is 4-Ch resistive FET mixer without amplifier. DOA algorithm is implemented using MUSIC algorithm with high resolution. We show that the results of DOA is $-30^{\circ},\;0^{\circ}$ and $60^{\circ}$, respectively. And we know that DOA estimation error occur by antenna radiation pattern and fabrication error of antenna array.

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10-GHz band 2 × 2 phased-array radio frequency receiver with 8-bit linear phase control and 15-dB gain control range using 65-nm complementary metal-oxide-semiconductor technology

  • Seon-Ho Han;Bon-Tae Koo
    • ETRI Journal
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    • 제46권4호
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    • pp.708-715
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    • 2024
  • We propose a 10-GHz 2 × 2 phased-array radio frequency (RF) receiver with an 8-bit linear phase and 15-dB gain control range using 65-nm complementary metal-oxide-semiconductor technology. An 8 × 8 phased-array receiver module is implemented using 16 2 × 2 RF phased-array integrated circuits. The receiver chip has four single-to-differential low-noise amplifier and gain-controlled phase-shifter (GCPS) channels, four channel combiners, and a 50-Ω driver. Using a novel complementary bias technique in a phase-shifting core circuit and an equivalent resistance-controlled resistor-inductor-capacitor load, the GCPS based on vector-sum structure increases the phase resolution with weighting-factor controllability, enabling the vector-sum phase-shifting circuit to require a low current and small area due to its small 1.2-V supply. The 2 × 2 phased-array RF receiver chip has a power gain of 21 dB per channel and a 5.7-dB maximum single-channel noise-figure gain. The chip shows 8-bit phase states with a 2.39° root mean-square (RMS) phase error and a 0.4-dB RMS gain error with a 15-dB gain control range for a 2.5° RMS phase error over the 10 to10.5-GHz band.