• 제목/요약/키워드: receiver feedback

검색결과 176건 처리시간 0.018초

CDMA 시스템에서 결정궤환을 이용한 다중 사용자 수신기 (Decision-feedback Multiuser Receiver for CDMA Systems)

  • 김복규;김경호;이재용;권성락;김창언
    • 한국전자파학회논문지
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    • 제8권6호
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    • pp.589-599
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    • 1997
  • 본 논문에서는 동기 CDMA 환경에서, 사용자간 간섭을 제거하기 위해 결정궤환을 이용한 다중 사용자 수신기 를 설계한다 부가백색 가우시안 잡음(AWGN) 채널인 경우에는 정합여파기 뱅크, 페이딩 채널인 경우는 RAKE 수신기 뱅크 출력으로부터 결정궤환을 이용하여 사용자간 간섭을 제거하고, 결정단에서 사용자 신호를 결정한다. 정합여파기와 RAKE 수신기는 심볼간 간섭과 다경로에 의한 간섭을 제거하고, 결정궤환 구조는 사용 자의 신호간 간섭을 제거한다. 결정궤환 구조의 계수는 Least Mean Square(LMS) 알고리듬에 의해서 적응되 도록한다. 실험 결과를 통해서, 이동 통신 다중 사용자 환경에서 RAKE 수신기만을 사용하는 경우보다 결정궤환을 이용 한 다중사용자 수신기를 사용하는 경우에 더욱 성능이 향상되는 것을 확인할 수 있었다.

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적응성 궤환방식을 이용한 간섭잡음제거기 (Interference Cancellation System using Adaptive Feedback Method)

  • 김선진;이제영;이종철;김종헌;이병제;김남영
    • 한국전자파학회논문지
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    • 제14권2호
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    • pp.183-191
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    • 2003
  • 본 논문은 동일 주파수 무선통신 시스템에서 발생되는 궤환신호를 상쇄하기 위한 간섭잡음제거기에 관한 연구이다. 송신 안테나에서 수신 안테나로 시변 궤환되는 신호는 수신 시스템의 성능을 저하시킨다. 따라서, 본 논문에서는 이러한 시변 궤환신호를 제거하므로써 수신기의 발진현상을 방지하고 전력증폭기의 최대 출력을 지속적으로 유지하도록 하는 적응성 궤환방식을 이용한 간섭잡음제거기를 제안하였다.

동일 주파수 무선통신 시스템의 발진방지를 위한 간섭잡음제거기 (Interference Cancellation System to Prevent the Oscillation of the Wireless Communication System using the Same Frequency)

  • 김선진;김남영
    • 한국전기전자재료학회논문지
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    • 제16권3호
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    • pp.253-262
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    • 2003
  • In this paper, the interference cancellation system, which is used to cancel the feedback signal in the wireless communication system with the same frequency, is studied. The time varying feedback signal generated from transmitter antenna to receiver antenna reduces the performance of the receiver system. the interference cancellation system using adaptive feedback method(AF-ICS) is suggested to prevent the oscillation of the receiver system and maintain the maximum output power of the power amplifier by the reduction of time-varying feedback signal and also this paper conforms that the oscillation disappears from the output signal by cancellation of the feedback signal and the total output power is satisfied the system specification.

A Single Feedback Based Interference Alignment for Three-User MIMO Interference Channels with Limited Feedback

  • Chae, Hyukjin;Kim, Kiyeon;Ran, Rong;Kim, Dong Ku
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제7권4호
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    • pp.692-710
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    • 2013
  • Conventional interference alignment (IA) for a MIMO interference channel (IFC) requires global and perfect channel state information at transmitter (CSIT) to achieve the optimal degrees of freedom (DoF), which prohibits practical implementation. In order to alleviate the global CSIT requirement caused by the coupled relation among all of IA equations, we propose an IA scheme with a single feedback link of each receiver in a limited feedback environment for a three-user MIMO IFC. The main feature of the proposed scheme is that one of users takes out a fraction of its maximum number of data streams to decouple IA equations for three-user MIMO IFC, which results in a single link feedback structure at each receiver. While for the conventional IA each receiver has to feed back to all transmitters for transmitting the maximum number of data streams. With the assumption of a random codebook, we analyze the upper bound of the average throughput loss caused by quantized channel knowledge as a function of feedback bits. Analytic results show that the proposed scheme outperforms the conventional IA scheme in term of the feedback overhead and the sum rate as well.

Packet Loss Patterns Adaptive Feedback Scheduling for Reliable Multicast

  • Baek, Jin-Suk;Kim, Cheon-Shik;Hong, You-Sik
    • Journal of Ubiquitous Convergence Technology
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    • 제1권1호
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    • pp.28-34
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    • 2007
  • Tree-based reliable multicast protocols provide scalability by distributing error-recovery tasks among several repair nodes. These repair nodes perform local error recovery for their receiver nodes using the data stored in their buffers. We propose a packet loss patterns adaptive feedback scheduling scheme to manage these buffers in an efficient manner. Under our scheme, receiver nodes send NAKs to repair nodes to request packet retransmissions only when the packet losses are independent events from other nodes. At dynamic and infrequent intervals, they also send ACKs to indicate which packets can be safely discarded from the repair node's buffer. Our scheme reduces delay in error recovery because the requested packets are almost always available in the repair node's buffers. It also reduces the repair node's workload because (a) each receiver node sends infrequent ACKs with non-fixed intervals and (b) their sending times are fairly distributed among all the receiver nodes.

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Decision Feedback Equalizer for DS-UWB Systems

  • 신오순
    • 한국통신학회논문지
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    • 제33권5A호
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    • pp.500-508
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    • 2008
  • Direct-sequence ultra-wideband(DS-UWB) system is being considered as one of promising transmission technologies for wireless personal area networks(WPANs). Due to relatively low spreading factors and huge bandwidth of transmit signal, a DS-UWB receiver needs to be equipped not only with a rake receiver but also with an equalizer, of which the equalizer is not required for traditional direct-sequence code division multiple access(DS-CDMA) systems. The number of rake fingers is limited in practice, influencing the performance of the subsequent equalizer. In this paper, we derive a decision feedback equalizer(DFE) for DS-UWB systems based on the minimum mean square error(MMSE) criterion, and investigate the impact of various parameters on the DFE performance in realistic scenarios. In particular, we propose an approach to improving the performance of the DFE using additional channel estimates for multipaths not combined in the rake receiver, and discuss how the accuracy of channel estimation affects desirable DFE configuration. Moreover, we present simulation results that show the impact of turbo equalization on the DFE performance.

Performance Analysis of Suboptimal Receiver Combining Adaptive Array Antenna and Orthogonal Decision-Feedback Detector for DS/CDMA System

  • Cho, Young-pil;Yoo, Sung-Kyun;Lee, Hyung-ki;Kwak, Kyung-sup
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2002년도 ITC-CSCC -2
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    • pp.1354-1357
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    • 2002
  • In this paper, we propose a suboptimal receiver combining adaptive array antenna and orthogonal decision-feedback detector in DS/CDMA system. Adaptive array antenna can cancel out undesired signal using beamforming scheme. However, if there are interfering signals from undesired users with the same incident angle as that of a desired user, an adaptive array antenna cannot suppress them. The proposed receiver can cancel out remaining interference from users having nearly the same beam pattern. And we employ Orthogonal Decision-Feedback Detector (ODFD) as multiuser detection. The ODFD performs as good as the decorrelating decision -feedback detector (DDD) with much less complexity. Simulation results show that the proposed system provides a significantly enhanced performance.

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AWGN 채널환경에서 Direct-Conversion 수신기의 성능분석에 관한 연구 (A Study on a Performance Analysis of Direct-Conversion Receiver In Additive White Gaussian Noise Channel)

  • 조형래;김철성;박성진
    • 한국정보통신학회논문지
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    • 제5권4호
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    • pp.668-675
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    • 2001
  • 최근, 상업적인 pcs시스템은 매우 발전되어 있으며, 결국 차세대 이동통신은 멀티미디어 서비스를 제공하는 IMT-2000에 의해 실현될 것이다. 그러므로 , 새로운 형태의 수신 시스템 연구가 활발히 진행되고 있고, 이중하나가 Direct conversion 방식이다 Direct conversion은 차세대 이동통신 시스템에 필요한 저전력, 소형, MMIC, 저가에 적합한 방식이다. 이 시스템을 사용할 경우 DC-offset의 문제가 발생하게 된다. DC-offset은 시스템에서 주파수 합성기의 누설신호에 의해 원하는 신호의 증폭을 억압한다. 본 논문에서 DC-offset을 제거하는 방법에 대해 고려한다. DC-offset의 제거법에는 AC-coupling, 대용량 capacitor, DC-feedback loop, DC-free coding의 4가지 방법이 있다. 이중에서 AC-coupling법은 가장 간단하며, DC-feedback법은 최고의 성능을 가진다. AC-coupling법과 DC-feedback법을 HP사의 ADS를 사용하여 시뮬레이션 하였다.

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Adaptive Channel-Matched Extended Alamouti Space-Time Code Exploiting Partial Feedback

  • Badic, Biljana;Rupp, Markus;Weinrichter, Hans
    • ETRI Journal
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    • 제26권5호
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    • pp.443-451
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    • 2004
  • Since the publication of Alamouti's famous space-time block code, various quasi-orthogonal space-time block codes (QSTBC) for multi-input multi-output (MIMO) fading channels for more than two transmit antennas have been proposed. It has been shown that these codes cannot achieve full diversity at full rate. In this paper, we present a simple feedback scheme for rich scattering (flat Rayleigh fading) MIMO channels that improves the coding gain and diversity of a QSTBC for 2$^n$ (n=3, 4, ${\cdots}$) transmit antennas. The relevant channel state information is sent back from the receiver to the transmitter quantized to one or two bits per code block. In this way, signal transmission with an improved coding gain and diversity near to the maximum diversity order is achieved. Such high diversity can be exploited with either a maximum-likelihood receiver or low-complexity zero-forcing receiver.

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Design Optimization of Hybrid-Integrated 20-Gb/s Optical Receivers

  • Jung, Hyun-Yong;Youn, Jin-Sung;Choi, Woo-Young
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제14권4호
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    • pp.443-450
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    • 2014
  • This paper presents a 20-Gb/s optical receiver circuit fabricated with standard 65-nm CMOS technology. Our receiver circuits are designed with consideration for parasitic inductance and capacitance due to bonding wires connecting the photodetector and the circuit realized separately. Such parasitic inductance and capacitance usually disturb the high-speed performance but, with careful circuit design, we achieve optimized wide and flat response. The receiver circuit is composed of a transimpedance amplifier (TIA) with a DC-balancing buffer, a post amplifier (PA), and an output buffer. The TIA is designed in the shunt-feedback configuration with inductive peaking. The PA is composed of a 6-stage differential amplifier having interleaved active feedback. The receiver circuit is mounted on a FR4 PCB and wire-bonded to an equivalent circuit that emulates a photodetector. The measured transimpedance gain and 3-dB bandwidth of our optical receiver circuit is 84 $dB{\Omega}$ and 12 GHz, respectively. 20-Gb/s $2^{31}-1$ electrical pseudo-random bit sequence data are successfully received with the bit-error rate less than $10^{-12}$. The receiver circuit has chip area of $0.5mm{\times}0.44mm$ and it consumes excluding the output buffer 84 mW with 1.2-V supply voltage.