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Implementation of adaptive blind equalizer with carrier recovery for QAM receiver chip

机译:QAM接收机芯片带载波恢复的自适应盲均衡器的实现

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In QAM demodulator chip, the blind adaptive decision feedback equalizer and carrier recovery function must be improved. Among existing works of high speed pipelined adaptive DFE (decision feedback equalizer), the time multiplexing architecture based on the MUX control unit is very attractive. It suffers from that complex control unit increases in proportion to filter length. This paper mainly proposes pipeline DFE structure using relaxed look ahead, retiming technology and recirculating register technique result in a substantial hardware saving than the time multiplying architecture based on the MUX control units and parallel processing. Meanwhile, in the carrier recovery loop, combining with Kim's phase detector, by adjusting the loop bandwidth in response to output of phase detector, the convergence time of acquisition and phase jitter in the steady state can be reduced. The scheme, simulated by software simulation, implemented by Virtex-II-3000 FPGA, has been applied to 4,16,32,64,128, 256 QAM modulation, can acquire up to /spl plusmn/200KHz offset. The QAM receiver chip is fabricated in SMIC 0.18 micron fabrication process successfully. The whole chip comprises 10bit ADC, PLL, AGC, variable symbol rate recovery, DFE, adaptive carrier recovery and feed forward error controller module, the working frequency is 120MHz.
机译:在QAM解调器芯片中,必须改进盲自适应判决反馈均衡器和载波恢复功能。在高速流水线自适应DFE(决策反馈均衡器)的现有工作中,基于MUX控制单元的时分复用架构非常吸引人。其缺点在于复杂的控制单元与过滤器长度成比例地增加。本文主要提出了一种流水线DFE结构,该结构采用了宽松的前瞻,重定时技术和循环寄存器技术,与基于MUX控制单元和并行处理的时间乘法架构相比,可节省大量硬件。同时,在载波恢复环路中,结合Kim的鉴相器,通过响应鉴相器的输出调节环路带宽,可以减少稳态下采集和相位抖动的收敛时间。该方案通过Virtex-II-3000 FPGA的软件仿真进行仿真,已应用于4,16,32,64,128,256 QAM调制,可获取高达/ spl plusmn / 200KHz的偏移。 QAM接收器芯片已成功通过SMIC 0.18微米制造工艺制造。整个芯片包括10bit ADC,PLL,AGC,可变符号率恢复,DFE,自适应载波恢复和前馈误差控制器模块,工作频率为120MHz。

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