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Multi-level quantization and blind equalization based direct transmission method of digital baseband signal

机译:基于多级量化和盲均衡的数字基带信号直接传输方法

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摘要

The direct transmission of digital baseband signals has practical significance in the field of Ethernet terminal connection, high-speed digital communication, data transmission of various types of information peripherals. The signal amplitude gradually decays while the transmission distance increases. Also the attenuation is proportional to the signal frequency, resulting in signal distortion and receiving error. It is a common method for digital baseband signal transmission to use pre-emphasis chip and equalizer chip to improve the transmission quality with a wide range of mature applications. This paper describes a new type of digital signal transmission method, as the receiver using analog-to-digital converter, instead of equalizer chip, to achieve the multi-level quantization of receiving time-domain data waveform. The waveform of the transmitted digital high and low level signal is sampled into multi-bit values. Then, the paper realizes adaptive frequency domain equalization based on soft threshold and makes use of multi-level quantization soft information for error correction. Error correcting code is mainly used to correct the error caused by the channel bandwidth limit, external noise or interference in the process of data transmission, so as to improve the stability and reliability of the transmission. The paper uses the two-stage error correcting codec system based on both Turbo and BCH coding, to achieve the high performance of Turbo code, and good characters of respond time and complexity. The transmitter outputs 12.5 MHz pseudo-random sequence through a 199.93 meter unshielded balanced twisted pair transmission medium. And the receiver circuit using a 62.5 MSPS analog-to-digital converter over-samples the waveform to 8-level quantity. The output error of a 65536 bit pseudo-random sequence is less than 8 bits, and the error correction can be further improved by 8b-10b codec. Compared with the traditional pre-emphasis and balanced interface ICs connection, the method described in this article has the advantages of longer transmission distance, better flexibility and wider scope of use.
机译:数字基带信号的直接传输在以太网终端连接,高速数字通信,各种类型的信息外围设备的数据传输领域中具有实际意义。随着传输距离的增加,信号幅度逐渐衰减。衰减也与信号频率成正比,从而导致信号失真和接收误差。在多种成熟应用中,使用预加重芯片和均衡器芯片来提高传输质​​量是数字基带信号传输的常见方法。本文介绍了一种新型的数字信号传输方法,即接收机采用模数转换器代替均衡器芯片,以实现接收时域数据波形的多级量化。所发送的数字高低电平信号的波形被采样为多位值。然后,本文基于软阈值实现自适应频域均衡,并利用多级量化软信息进行纠错。纠错码主要用于纠正数据传输过程中由于信道带宽限制,外部噪声或干扰引起的错误,以提高传输的稳定性和可靠性。本文使用基于Turbo和BCH编码的两阶段纠错编解码系统,以实现高性能的Turbo码以及良好的响应时间和复杂性。发射机通过199.93米的非屏蔽平衡双绞线传输介质输出12.5 MHz伪随机序列。使用62.5 MSPS模数转换器的接收器电路将波形过采样到8级电平。 65536位伪随机序列的输出错误小于8位,并且8b-10b编解码器可以进一步改善错误校正。与传统的预加重和平衡接口IC连接相比,本文描述的方法具有更长的传输距离,更好的灵活性和更广泛的使用范围。

著录项

  • 来源
    《Physical Communication》 |2017年第2期|348-354|共7页
  • 作者单位

    Tianjin Key laboratory of Wireless Mobile Communications and Power Transmission, Tianjin Normal University, Tianjin 300387, China,Deviser Instrument Co., Tianjin 300384, China;

    Tianjin Key laboratory of Wireless Mobile Communications and Power Transmission, Tianjin Normal University, Tianjin 300387, China,Department of Electrical and Electronic Engineering, University of Strathclyde, C1 1XW, United Kingdom;

    Tianjin Key laboratory of Wireless Mobile Communications and Power Transmission, Tianjin Normal University, Tianjin 300387, China;

    Tianjin Key laboratory of Wireless Mobile Communications and Power Transmission, Tianjin Normal University, Tianjin 300387, China;

    State Key Laboratory of Precise Measurement Technology and Instrument, Tianjin University, 300074, China;

    Department of Electrical and Electronic Engineering, University of Strathclyde, C1 1XW, United Kingdom;

    State Key Laboratory of Precise Measurement Technology and Instrument, Tianjin University, 300074, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Direct transmission of digital baseband signal; Multi-level quantization; Channel codec; Adaptive equalization;

    机译:直接传输数字基带信号;多级量化;通道编解码器;自适应均衡;

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