• 제목/요약/키워드: Multi Channel Receiver

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다중 경로 채널환경에서 UWB RAKE 수신기의 성능분석 (Performance analysis of UWB RAKE Receiver in multi-Path channel)

  • 오세왕;오태원
    • 한국전자파학회:학술대회논문집
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    • 한국전자파학회 2003년도 종합학술발표회 논문집 Vol.13 No.1
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    • pp.594-598
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    • 2003
  • In this paper, we analyze the performance of UWB(Ultra-WideBand) communication system employing Bi-phase modulation and RAKE Receiver under the MAI(Multiple Access Interference) and the OSI(Other System Interference) environment. Using the multi-path channel model recommended by IEEE P802.15.TG3a, the performance degradation Is described with the number of users, the number of RAKE fingers and training sequences. To meet BER 10e-4 for 20 users at the same time, the number of RAKE fingers are proposed from 3 to 32. And the number of training sequences are limited less than 8 to keep the channel estimation error within 3dB

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다중경로 채널을 보상하는 주파수 영역 기반 BPM-UWB 수신기 (Frequency-domain Based BPM-UWB Receiver with Channel Compensation)

  • 최호선;양훈기
    • 한국ITS학회 논문지
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    • 제7권1호
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    • pp.84-91
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    • 2008
  • 본 논문은 다중경로 채널에 따른 채널왜곡을 보상하여 복조하는 주파수 영역 기반 BPM-UWB수신기를 제안한다. 시간영역 BPM-UWB수신기로부터 주파수 영역 기반 BPM-UWB 수신 방식을 유도하였으며 다중경로 채널 환경에서도 성능을 최적화 시킬 수 있는 matched 필터 방식 수신기 구조를 제시하였다. 수학적인 분석에 의해서 시스템 성능을 유도하였으며 시뮬레이션에 의해서 제안한 채널 보상 시스템에 의해 성능이 획기적으로 개선됨을 보인다.

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DSP 칩을 이용한 다중채널 R2MFC/DTMF/CCT 겸용 수신기 (A Single-Chip, Multichannel Combined R2MFC/DTMF/CCT Receiver Using Digital Signal Processor)

  • 김덕환;이형호;김대영
    • 전자공학회논문지B
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    • 제31B권10호
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    • pp.21-31
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    • 1994
  • This paper describes the multichannel combined R2MFC/DTMF/CCT reciver which provides a signaling service functions for call processing control in digital switching system. Using the TMS320C25 DSP chip, we have implemented multi-function receriver shich processes 8 channels of R2MFC, DTMF, and CCT signals simultaneously. In order to increase the channel multiplicity of the combined receiver. R2MFC and CCT receiver were employed by discrete Fourier transform(DFT) method using Goertzel algorithm, and DTMFreceiver was employ by infinite impulse reponse(IIR) filtering method using 4KHz subsampling technique. The combined receiver has 4 function modes for each channel such as R2MFC, DTMF, CCT, and Idle modes. The function mode of each channel may be selected at any time by single-chip micro-controller(.mu.C). Hence, the number of channels assigned for each function mode can be adjusted dynamically according to the signaling traffic variations. From the experimental test results using the test-bed, it has been proved that the combined receiver statisfies all receiver satisfies all receiver specifications, and provides good channel multiplicity and performance, Therefore, it may give a great improvement than existing receiver in cost, reliability, availability, and serviceability.

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A Modified Delay and Doppler Profiler based ICI Canceling OFDM Receiver for Underwater Multi-path Doppler Channel

  • Catherine Akioya;Shiho Oshiro;Hiromasa Yamada;Tomohisa Wada
    • International Journal of Computer Science & Network Security
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    • 제23권7호
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    • pp.1-8
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    • 2023
  • An Orthogonal Frequency Division Multiplexing (OFDM) based wireless communication system has drawn wide attention for its high transmission rate and high spectrum efficiency in not only radio but also Underwater Acoustic (UWA) applications. Because of the narrow sub-carrier spacing of OFDM, orthogonality between sub-carriers is easily affected by Doppler effect caused by the movement of transmitter or receiver. Previously, Doppler compensation signal processing algorithm for Desired propagation path was proposed. However, other Doppler shifts caused by delayed Undesired signal arriving from different directions cannot be perfectly compensated. Then Receiver Bit Error Rate (BER) is degraded by Inter-Carrier-Interference (ICI) caused in the case of Multi-path Doppler channel. To mitigate the ICI effect, a modified Delay and Doppler Profiler (mDDP), which estimates not only attenuation, relative delay and Doppler shift but also sampling clock shift of each multi-path component, is proposed. Based on the outputs of mDDP, an ICI canceling multi-tap equalizer is also proposed. Computer simulated performances of one-tap equalizer with the conventional Time domain linear interpolated Channel Transfer Function (CTF) estimator, multi-tap equalizer based on mDDP are compared. According to the simulation results, BER improvement has been observed. Especially, in the condition of 16QAM modulation, transmitting vessel speed of 6m/s, two-path multipath channel with direct path and ocean surface reflection path; more than one order of magnitude BER reduction has been observed at CNR=30dB.

Array Calibration for CDMA Smart Antenna Systems

  • Kyeong, Mun-Geon;Park, Hyung-Geun;Oh, Hyun-Seo;Jung, Jae-Ho
    • ETRI Journal
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    • 제26권6호
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    • pp.605-614
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    • 2004
  • In this paper, we investigate array calibration algorithms to derive a further improved version for correcting antenna array errors and RF transceiver errors in CDMA smart antenna systems. The structure of a multi-channel RF transceiver with a digital calibration apparatus and its calibration techniques are presented, where we propose a new RF receiver calibration scheme to minimize interference of the calibration signal on the user signals. The calibration signal is injected into a multi-channel receiver through a calibration signal injector whose array response vector is controlled in order to have a low correlation with the antenna response vector of the receive signals. We suggest a model-based antenna array calibration to remove the antenna array errors including mutual coupling errors or to predict the element patterns from the array manifold measured at a small number of angles. Computer simulations and experiment results are shown to verify the calibration algorithms.

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Blind channel equalization using fourth-order cumulants and a neural network

  • Han, Soo-whan
    • International Journal of Fuzzy Logic and Intelligent Systems
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    • 제5권1호
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    • pp.13-20
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    • 2005
  • This paper addresses a new blind channel equalization method using fourth-order cumulants of channel inputs and a three-layer neural network equalizer. The proposed algorithm is robust with respect to the existence of heavy Gaussian noise in a channel and does not require the minimum-phase characteristic of the channel. The transmitted signals at the receiver are over-sampled to ensure the channel described by a full-column rank matrix. It changes a single-input/single-output (SISO) finite-impulse response (FIR) channel to a single-input/multi-output (SIMO) channel. Based on the properties of the fourth-order cumulants of the over-sampled channel inputs, the iterative algorithm is derived to estimate the deconvolution matrix which makes the overall transfer matrix transparent, i.e., it can be reduced to the identity matrix by simple recordering and scaling. By using this estimated deconvolution matrix, which is the inverse of the over-sampled unknown channel, a three-layer neural network equalizer is implemented at the receiver. In simulation studies, the stochastic version of the proposed algorithm is tested with three-ray multi-path channels for on-line operation, and its performance is compared with a method based on conventional second-order statistics. Relatively good results, withe fast convergence speed, are achieved, even when the transmitted symbols are significantly corrupted with Gaussian noise.

버퍼공유기법을 사용한 멀티채널 네트워크 컨트롤러 구현 (Implementation of the Multi-Channel Network Controller using Buffer Sharing Mechanism)

  • 이태수;박재현
    • 전기학회논문지
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    • 제56권4호
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    • pp.784-789
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    • 2007
  • This paper presents an implementation of a new type of architecture to improve an overflow problem on the network buffer. Each receiver channel of network system stores the message in its own buffer. If some receiver channel receives many messages, buffer overflow problem may occur for the channel. This paper proposes a network controller that implements a receiver channel with shared-memory to save all of the received messages from the every incomming channels. The proposed architecture is applied to ARINC-429, a real-time control network for commercial avionics system. For verifying performance of the architecture, ARINC-429 controller is designed using a SOPC platform, designed by Verilog and targeted to Xilinx Virtex-4 with a built-in PPC405 core.

채널 추정 오차가 있는 다중사용자 다중안테나 채널에서 신호 대 포스트-프로세싱 리키지 및 잡음비 기반 송신기와 수신기 결합 설계 (Joint Transmitter and Receiver Design Based on SPPLNR for Multi-user MIMO Channel with Channel Estimation Error)

  • 서동준;이판형;이재홍
    • 대한전자공학회논문지TC
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    • 제46권2호
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    • pp.53-59
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    • 2009
  • 다중사용자 다중 송수신 안테나 시스템의 전송 효율을 높이기 위해 기지국은 여러 사용자에게 동시에 데이터를 전송해야 하고, 이러한 경우 사용자간 간섭이 발생하게 된다. 본 논문에서는 포스트-프로세싱 리키지를 각 사용자의 수신 결합 후 어떤 사용자의 신호에 의해 다른 사용자들에게 나타나는 간섭 전력의 합으로 정의한다. 또한 이것을 이용하여 새로운 성능계수인 신호 대 포스트-프로세싱 리키지 및 잡음비를 정의한다. 사용자간 간섭에 대처하기 위해 기존 기법들은 사용자간 간섭을 완전히 제거하는데 집중하는 반면, 본 논문에서는 각 사용자가 최소 평균 제곱 오차 결합 방법을 사용한다고 가정하고 신호 대 포스트-프로세싱 리키지 및 잡음비 최대화하는 방법을 제안한다. 제안된 기법은 안테나 수에 대한 조건을 필요로 하지 않는다는 장점이 있다. 모의 실험을 통하여 제안된 기법은 사용자간 간섭을 완벽히 제거하는 기법보다 채널 추정 오차가 있을 때 우수함을 보인다.

QFT를 이용한 TDX-계열 교환기용 DTMF 수신기의 성능평가 (Performance Evaluation of TDX-families DTMF Receiver with the QFT)

  • 윤달환
    • 한국통신학회논문지
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    • 제26권11C호
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    • pp.133-139
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    • 2001
  • DTMF(multi-tone multi-frequency) 신호의 경제적인 검출은 저렴한 가격의 통신장비를 개발하는데 중요한 요소이다. 현재 사용하고 있는 전전자식 교환기의 각 채널은 서로 독립된 DTMF수신기 회로를 갖고 있으며, 검출된 신호를 프로세서에 알려준다. 본 논문은 다중채널 DTMF수신기 신호검출에 QFT(quick Fourier transform) 알고리듬을 적용한다. 2$^{M}$개 실계수 데이터를 이용할 경우 기존의 radix-2 Cooley-Turkey FFT, Goertzel 및 DFT 알고리듬보다 처리시간과 메모리 소모를 줄이는 효과적인 알고리듬임을 보인다.다.

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A Simplified Zero-Forcing Receiver for Multi-User Uplink Systems Based on CB-OSFB Modulation

  • Bian, Xin;Tian, Jinfeng;Wang, Hong;Li, Mingqi;Song, Rongfang
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제14권5호
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    • pp.2275-2293
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    • 2020
  • This paper focuses on the simplified receiver design for multi-user circular block oversampled filter bank (CB-OSFB) uplink systems. Through application of discrete Fourier transform (DFT), the special banded structure and circular properties of the modulation matrix in the frequency domain of each user are derived. By exploiting the newly derived properties, a simplified zero-forcing (ZF) receiver is proposed for multi-user CB-OSFB uplink systems in the multipath channels. In the proposed receiver, the matrix inversion operation of the large dimension multi-user equivalent channel matrix is transformed into DFTs and smaller size matrix inversion operations. Simulation is given to show that the proposed ZF receiver can dramatically reduce the computational complexity while with almost the same symbol error rate as that of the traditional ZF receiver.