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Performance Evaluation Of Prml System Based On Thermal Decay Model

机译:基于热衰减模型的Prml系统性能评估

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摘要

The long-term bit error rate (BER) performance of partial response maximum likelihood (PRML) system using an adaptive equalizer in a perpendicular magnetic recording (PMR) channel with thermal decay is studied. A thermal decay model based on the experimental data giving the amplitude change of reproducing waveforms with the elapsed time for CoPtCr-SiO_2 PMR medium is obtained. The BER performance of PR1ML channel for the 16/17(0,6/6) nin-length-limited (RLL) code is evaluated by computer simulation using the model. The relationship between the ratio R_J of the jitter-like media noise power to the total noise power at the reading point and the required SNR to achieve a BER of 10~(-4) is also obtained and the performance is compared with that of the conventional equalization. The results show that the significant improvement in SNR by utilizing the adaptive equalization is recognized over all R_J compared with the conventional equalization.
机译:研究了在具有热衰减的垂直磁记录(PMR)通道中使用自适应均衡器的部分响应最大似然(PRML)系统的长期误码率(BER)性能。根据实验数据给出了热衰减模型,给出了CoPtCr-SiO_2 PMR介质随着时间的经过而产生的再现波形的幅度变化。通过使用该模型的计算机仿真评估了16/17(0,6 / 6)长度限制(RLL)码的PR1ML通道的BER性能。还获得了类似抖动的媒体噪声功率与读取点的总噪声功率之比R_J与达到BER为10〜(-4)所需的SNR之间的关系,并将其性能与常规均衡。结果表明,与常规均衡相比,在所有R_J上都认识到通过利用自适应均衡可以显着改善SNR。

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