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Joint echo canceller/equalizer and timing recovery for high speed full duplex baseband transmission systems

机译:高速全双工基带传输系统的联合回声消除器/均衡器和定时恢复

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The interaction between echo cancellation/equalization and timing recovery is analyzed, a complete simulation of a high-speed full-duplex digital subscriber loop system is reported, and issues related to the support of multirate sampling and feedback are discussed. The simulation results suggest that the number of equalizer (EQ) training symbols must be reduced, rather than the number of echo canceler (EC) training symbols, to save total EC/EQ training time, regardless of the length of the bridged taps. The pole-zero EC performs much better than the all-zero EC. In the all-zero EC, the system needs more EQ training symbols. Fractionally spaced EC/EQ performs better than symbol rate EC/EQ when the number of EC/EQ training symbols is large. The symbol rate EC/EQ has better or equivalent performance for small number of EC/EQ training symbols, relatively large noise, and long bridged taps. The symbol rate EC/EQ reaches a performance limit however, unlike the fractionally spaced EC/EQ system, for large SNR or large training sequences.
机译:分析了回声消除/均衡与定时恢复之间的相互作用,报告了高速全双工数字用户环路系统的完整仿真,并讨论了与支持多速率采样和反馈有关的问题。仿真结果表明,无论桥接抽头的长度如何,都必须减少均衡器(EQ)训练符号的数量,而不是回声消除器(EC)训练符号的数量,以节省总的EC / EQ训练时间。零极点EC的性能要好于全零点EC。在全零EC中,系统需要更多的EQ训练符号。当EC / EQ训练符号的数量很大时,小数间隔的EC / EQ会比符号率EC / EQ更好。对于少量的EC / EQ训练符号,相对较大的噪声和较长的桥接抽头,符号率EC / EQ具有更好或相当的性能。但是,与分数间隔EC / EQ系统不同,对于大SNR或大训练序列,符号率EC / EQ达到了性能极限。

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